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Journals   A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Chinese Physics
1009-1963
2016 Issue 1
Editorial
Hong Li;Liquan Chen;Institute of Physics;Chinese Academy of Sciences;
..............page:5
Entropy and heat generation of lithium cells/batteries
Songrui Wang;Science and Technology on Power Source Laboratory;Tianjin Institute of Power Sources;
..............page:6-11
Mechanics of high-capacity electrodes in lithium-ion batteries
Ting Zhu;Woodruff School of Mechanical Engineering;Georgia Institute of Technology;
..............page:12-19
Li-ion batteries: Phase transition
Peiyu Hou;Geng Chu;Jian Gao;Yantao Zhang;Lianqi Zhang;Tianjin Key Laboratory for Photoelectric Materials and Devices;School of Materials Science and Engineering;Tianjin University of Technology;Beijing National Laboratory for Condensed Matter Physics;Institute of Physics;Chinese Academy of Sciences;
..............page:20-30
Soft x-ray spectroscopy for probing electronic and chemical states of battery materials
Wanli Yang;Ruimin Qiao;Advanced Light Source;Lawrence Berkeley National Laboratory;
..............page:31-39
Electrochromic & magnetic properties of electrode materials for lithium ion batteries
Zheng-Fei Guo;Kun Pan;Xue-Jin Wang;Department of Applied Physics;College of Science;China Agricultural University;
..............page:40-46
Interfacial transport in lithium-ion conductors
Shaofei Wang;Liquan Chen;Institute of Physics;Chinese Academy of Sciences;
..............page:47-54
Size effects in lithium ion batteries
Hu-Rong Yao;Ya-Xia Yin;Yu-Guo Guo;CAS Key Laboratory of Molecular Nanostructure and Nanotechnology;Institute of Chemistry;Chinese Academy of Sciences;University of Chinese Academy of Sciences;Shandong Wina Green Power Co.Ltd.;
..............page:55-61
Understanding oxygen reactions in aprotic Li-O2 batteries
Shunchao Ma;Yelong Zhang;Qinghua Cui;Jing Zhao;Zhangquan Peng;State Key Laboratory of Electroanalytical Chemistry;and Institute of Applied Chemistry;Chinese Academy of Sciences;University of Chinese Academy of Sciences;
..............page:62-71
Strategies to curb structural changes of lithium/transition metal oxide cathode materials & the changes’ effects on thermal & cycling stability
Xiqian Yu;Enyuan Hu;Seongmin Bak;Yong-Ning Zhou;Xiao-Qing Yang;Chemistry Department;Brookhaven National Laboratory Upton;
..............page:72-81
Physics of electron and lithium-ion transport in electrode materials for Li-ion batteries
Musheng Wu;Bo Xu;Chuying Ouyang;Department of Physics;Laboratory of Computational Materials Physics;Jiangxi Normal University;
..............page:82-91
Wavy structures for stretchable energy storage devices: Structural design and implementation
Lei Wen;Ying Shi;Jing Chen;Bin Yan;Feng Li;Shenyang National Laboratory for Materials Science;Institute of Metal Research;Chinese Academy of Sciences;
..............page:92-100
High-throughput theoretical design of lithium battery materials
Shi-Gang Ling;Jian Gao;Rui-Juan Xiao;Li-Quan Chen;Beijing National Laboratory for Condensed Matter Physics;Institute of Physics;Chinese Academy of Sciences;
..............page:101-109
Surface structure evolution of cathode materials for Li-ion batteries
Yingchun Lyu;Yali Liu;Lin Gu;Beijing National Laboratory for Condensed Matter Physics;Institute of Physics;Chinese Academy of Sciences;Shanghai Institute of Space Power Sources;Collaborative Innovation Center of Quantum Matter;
..............page:110-118
Brief overview of electrochemical potential in lithium ion batteries
Jian Gao;Si-Qi Shi;Hong Li;Institute of Physics;Chinese Academy of Sciences;Materials Genome Institute;Shanghai University;School of Materials Science and Engineering;Shanghai University;
..............page:119-142
Lithium-ion transport in inorganic solid state electrolyte
Jian Gao;Yu-Sheng Zhao;Si-Qi Shi;Hong Li;Institute of Physics;Chinese Academy of Sciences;Materials Genome Institute;Shanghai University;Department of Physics and Astronomy and High Pressure Science and Engineering Center;University of Nevada;School of Materials Science and Engineering;Shanghai University;
..............page:143-177
Multi-scale computation methods: Their applications in lithium-ion battery research and development
Siqi Shi;Jian Gao;Yue Liu;Yan Zhao;Qu Wu;Wangwei Ju;Chuying Ouyang;Ruijuan Xiao;School of Materials Science and Engineering;Shanghai University;Materials Genome Institute;Shanghai University;School of Computer Engineering and Science;Shanghai University;Department of Physics;Jiangxi Normal University;Institute of Physics;Chinese Academy of Sciences;
..............page:178-201
Redox-assisted Li~+-storage in lithium-ion batteries
Qizhao Huang;Qing Wang;Department of Materials Science and Engineering;Faculty of Engineering;National University of Singapore;
..............page:202-208
Scientific and technological challenges toward application of lithium–sulfur batteries
Ya-Xia Yin;Hu-Rong Yao;Yu-Guo Guo;CAS Key Laboratory of Molecular Nanostructure and Nanotechnology;and Beijing National Laboratory for Molecular Sciences;Institute of Chemistry;Chinese Academy of Sciences;University of Chinese Academy of Sciences;Shandong Wina Green Power Co.;Ltd;
..............page:209-215
All-solid-state lithium batteries with inorganic solid electrolytes:Review of fundamental science
Xiayin Yao;Bingxin Huang;Jingyun Yin;Gang Peng;Zhen Huang;Chao Gao;Deng Liu;Xiaoxiong Xu;Ningbo Institute of Materials Technology and Engineering;Chinese Academy of Sciences;
..............page:216-229
FT-Raman spectroscopy study of solvent-in-salt electrolytes
Liumin Suo;Zheng Fang;Yong-Sheng Hu;Liquan Chen;Key Laboratory for Renewable Energy;Beijing Key Laboratory for New Energy Materials and Devices;Beijing National Laboratory for Condensed Matter Physics;Institute of Physics;Chinese Academy of Sciences;
..............page:230-233
Ab initio path-integral molecular dynamics and the quantum nature of hydrogen bonds
Yexin Feng;Ji Chen;Xin-Zheng Li;Enge Wang;International Center for Quantum Materials and School of Physics;Peking University;School of Physics;Peking University;Collaborative Innovation Center of Quantum Matter;
..............page:234-241
A new understanding of inert gas narcosis
Meng Zhang;Yi Gao;Haiping Fang;Division of Interfacial Water and Key Laboratory of Interfacial Physics and Technology;Shanghai Institute of Applied Physics;Chinese Academy of Sciences;School of Information Technology & Engineering;Jinzhong University;
..............page:242-247
Uncovering the underlying physical mechanisms of biological systems via quantification of landscape and flux
Li Xu;Xiakun Chu;Zhiqiang Yan;Xiliang Zheng;Kun Zhang;Feng Zhang;Han Yan;Wei Wu;Jin Wang;State Key Laboratory of Electroanalytical Chemistry;Changchun Institute of Applied Chemistry;Chinese Academy of Sciences;Department of Chemistry and Physics;Stony Brook University;
..............page:248-273
Self-assembly of block copolymers grafted onto a flat substrate:Recent progress in theory and simulations
Zheng Wang;Bao-Hui Li;The MOE Key Laboratory of Weak Light Nonlinear Photonics and School of Physics;Nankai University;
..............page:274-285
Development of mean-field electrical double layer theory
Yike Huang;Xiaohong Liu;Shu Li;Tianying Yan;School of Materials Science and Engineering;National Institute for Advanced Materials;Collaborative Innovation Center of Chemical Science and Engineering;Nankai University;
..............page:286-292
Modeling the temperature-dependent peptide vibrational spectra based on implicit-solvent model and enhance sampling technique
Tianmin Wu;Tianjun Wang;Xian Chen;Bin Fang;Ruiting Zhang;Wei Zhuang;Department of Chemical Physics;University of Science and Technology of China;State Key Lab of Molecular Reaction Dynamics;Dalian Institute of Chemical Physics;
..............page:293-302
Hierarchical processes in β-sheet peptide self-assembly from the microscopic to the mesoscopic level
Li Deng;Hai Xu;Centre for Bioengineering and Biotechnology;China University of Petroleum;
..............page:303-309
Computational design of proteins with novel structure and functions
Wei Yang;Lu-Hua Lai;BNLMS;State Key Laboratory for Structural Chemistry of Unstable and Stable Species;and Peking–Tsinghua Center for Life Sciences at College of Chemistry and Molecular Engineering;Peking University;Center for Quantitative Biology;Peking University;School of Life Sciences;Tsinghua University;
..............page:310-316
Flexibility of nucleic acids: From DNA to RNA
Lei Bao;Xi Zhang;Lei Jin;Zhi-Jie Tan;Department of Physics and Key Laboratory of Artificial Micro- and Nano-structures of Ministry of Education;School of Physics and Technology;Wuhan University;
..............page:317-327
Amyloid-β peptide aggregation and the influence of carbon nanoparticles
Wen-Hui Xi;Guang-Hong Wei;Key Laboratory for Computational Physical Sciences;State Key Laboratory of Surface Physics;Department of Physics;Fudan University;
..............page:328-336
Improvements in continuum modeling for biomolecular systems
Yu Qiao;Ben-Zhuo Lu;State Key Laboratory of Scientific and Engineering Computing;Academy of Mathematics and Systems Science;National Center for Mathematics and Interdisciplinary Sciences;Chinese Academy of Sciences;
..............page:337-342
Multiscale molecular dynamics simulations of membrane remodeling by Bin/Amphiphysin/Rvs family proteins
Chun Chan;Haohua Wen;Lanyuan Lu;Jun Fan;Department of Physics and Materials Science;City University of Hong Kong;City University of Hong Kong Shenzhen Research Institute;School of Biological Sciences;Nanyang Technological University;
..............page:353-363
In vitro three-dimensional cancer metastasis modeling:Past, present, and future
Wei-jing Han;Wei Yuan;Jiang-rui Zhu;Qihui Fan;Junle Qu;Li-yu Liu;Key Laboratory of Soft Matter Physics;Institute of Physics;Chinese Academy of Sciences;Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province;Shenzhen University;
..............page:364-373
Recent technical advancements enabled atomic resolution Cryo EM
Xueming Li;School of Life Sciences;Tsinghua University;
..............page:374-381
Unexpected low thermal conductivity and large power factor in Dirac semimetal Cd3As2
Cheng Zhang;Tong Zhou;Sihang Liang;Junzhi Cao;Xiang Yuan;Yanwen Liu;Yao Shen;Qisi Wang;Jun Zhao;Zhongqin Yang;Faxian Xiu;State Key Laboratory of Surface Physics and Department of Physics;Fudan University;Collaborative Innovation Center of Advanced Microstructures;Fudan University;Key Laboratory for Computational Physical Sciences;Fudan University;
..............page:382-387
Fabrication of superconducting Nb N meander nanowires by nano-imprint lithography
Mei Yang;Li-Hua Liu;Lu-Hui Ning;Yi-Rong Jin;Hui Deng;Jie Li;Yang Li;Dong-Ning Zheng;Department of Physics;School of Mathematics and Physics;University of Science and Technology Beijing;Institute of Physics;Chinese Academy of Sciences;
..............page:388-393
Long-distance super-exchange and quantum magnetic relaxation in a hybrid metal–organic framework
Ying Tian;Shipeng Shen;Junzhuang Cong;Liqin Yan;Yisheng Chai;Young Sun;Beijing National Laboratory for Condensed Matter Physics;Institute of Physics;Chinese Academy of Sciences;
..............page:394-397
A new six-component super soliton hierarchy and its self-consistent sources and conservation laws
Han-yu Wei;Tie-cheng Xia;College of Mathematics and Statistics;Zhoukou Normal University;Department of Mathematics;Shanghai University;
..............page:398-403
Denoising of chaotic signal using independent component analysis and empirical mode decomposition with circulate translating
Wen-Bo Wang;Xiao-Dong Zhang;Yuchan Chang;Xiang-Li Wang;Zhao Wang;Xi Chen;Lei Zheng;College of Science;Wuhan University of Science and Technology;State Key Laboratory of Satellite Ocean Environment Dynamics;Second Institute of Oceanography;State Oceanic Administration;School of Finance;Renmin University of China;School of Computer Science and Technology;Wuhan University of Technology;College of Information Science and Engineering;Wuhan University of Science and Technology;Wuhan NARI Limited Liability Company of Sate Grid Electric Power Research Institute;
..............page:404-410
Birkhoffian symplectic algorithms derived from Hamiltonian symplectic algorithms
Xin-Lei Kong;Hui-Bin Wu;Feng-Xiang Mei;College of Science;North China University of Technology;School of Mathematics and Statistics;Beijing Institute of Technology;School of Aerospace Engineering;Beijing Institute of Technology;
..............page:411-415
Atomic-scale simulations of material behaviors and tribology properties for BCC metal film
H D Aristizabal;P A Parra;P L ópez;E Restrepo-Parra;PCM Computational Applications;Universidad Nacional de Colombia-Sede Manizales;Universidad Católica de Manizales;Universidad Catóica de Manizales;
..............page:416-422
Multi-symplectic variational integrators for nonlinear Schrdinger equations with variable coefficients
Cui-Cui Liao;Jin-Chao Cui;Jiu-Zhen Liang;Xiao-Hua Ding;Department of Information and Computing Science;College of Science;Jiangnan University;College of Internet of Things;Jiangnan University;Department of Mathematics;Harbin Institute of Technology;
..............page:423-431
Solution of Dirac equation for Eckart potential and trigonometric Manning Rosen potential using asymptotic iteration method
Resita Arum Sari;A Suparmi;C Cari;Physics Department;Sebelas Maret University;
..............page:432-439
Spin dynamics of the potassium magnetometer in spin-exchange relaxation free regime
Ji-Qing Fu;Peng-Cheng Du;Qing Zhou;Ru-Quan Wang;Institute of Physics;Chinese Academy of Sciences;School of Physical Science and Technology;Yunnan University;
..............page:440-443
Entanglement and non-Markovianity of a multi-level atom decaying in a cavity
Zi-Long Fan;Yu-Kun Ren;Hao-Sheng Zeng;Key Laboratory of Low-Dimensional Quantum Structures and Quantum Control of Ministry of Education;Department of Physics;Hunan Normal University;
..............page:444-449
Tunable ponderomotive squeezing induced by Coulomb interaction in an optomechanical system
Qin Wu;School of Information Engineering;Guangdong Medical University;
..............page:450-455
Passive decoy-state quantum key distribution for the weak coherent photon source with finite-length key
Yuan Li;Wansu Bao;Hongwei Li;Chun Zhou;Yang Wang;Zhengzhou Information Science and Technology Institute;Synergetic Innovation Center of Quantum Information and Quantum Physics;University of Science and Technology of China;
..............page:456-463
Detection efficiency characteristics of free-running In Ga As/In P single photon detector using passive quenching active reset IC
Fu Zheng;Chao Wang;Zhi-Bin Sun;Guang-Jie Zhai;Key Laboratory of Electronics and Information Technology for Space Systems;National Space Science Center;Chinese Academy of Sciences;University of Chinese Academy of Sciences;College of Physics;Beijing Institute of Technology;
..............page:464-468
Effects of a finite number of particles on the thermodynamic properties of a harmonically trapped ideal charged Bose gas in a constant magnetic field
Duan-Liang Xiao;Meng-Yun Lai;Xiao-Yin Pan;Department of Physics;Ningbo University;
..............page:469-477
Quantum walks with coins undergoing different quantum noisy channels
Hao Qin;Peng Xue;Department of Physics;Southeast University;Beijing Institute of Mechanical and Electrical Space;
..............page:478-483
Complex dynamics of an archetypal self-excited SD oscillator driven by moving belt friction
Zhi-Xin Li;Qing-Jie Cao;Léger Alain;School of Astronautics;Harbin Institute of Technology;Laboratoire de Mécanique et d’Acoustique;CNRS;
..............page:484-492
Memcapacitor model and its application in a chaotic oscillator
Guang-Yi Wang;Bo-Zhen Cai;Pei-Pei Jin;Ti-Ling Hu;Key Laboratory of RF Circuits and Systems;Ministry of Education of China;Institute of Modern Circuits and Intelligent Information;Hangzhou Dianzi University;
..............page:493-504
Effects of abnormal excitation on the dynamics of spiral waves
Min-Yi Deng;Xue-Liang Zhang;Jing-Yu Dai;College of Physical Science and Technology;Guangxi Normal University;
..............page:505-510
Parrondo’s paradox for chaos control and anticontrol of fractional-order systems
Marius-F Danca;Wallace K S Tang;Department of Mathematics and Computer Science;Avram Iancu University;Romanian Institute for Science and Technology;Department of Electronic Engineering;City University of Hong Kong;
..............page:511-517
The Wronskian technique for nonlinear evolution equations
Jian-Jun Cheng;Hong-Qing Zhang;School of Mechano-Electronic Engineering;Xidian University;Department of Applied Mathematics;Dalian University of Technology;
..............page:518-523
Kuznetsov–Ma soliton and Akhmediev breather of higher-order nonlinear Schrdinger equation
Zai-Dong Li;Xuan Wu;Qiu-Yan Li;P B He;Department of Applied Physics;Hebei University of Technology;College of Physics and Microelectronics Science;Key Laboratory for Micro-Nano Physics and Technology of Hunan Province;Hunan University;
..............page:524-528
Study on bi-directional pedestrian movement using ant algorithms
Sibel Gokce;Ozhan Kayacan;Department of Physics;Faculty of Arts and Sciences;Celal Bayar University;
..............page:529-538
Correlation effects on the fine-structure splitting within the 3d~9 ground configuration in highly-charged Co-like ions
Xue-Ling Guo;Min Huang;Jun Yan;Shuang Li;Kai Wang;Ran Si;Chong-Yang Chen;Applied Ion Beam Physics Laboratory of Key Laboratory of the Ministry of Education;Fudan University;Shanghai EBIT Lab;Institute of Modern Physics;Department of Nuclear Science and Technology;Fudan University;Institute of Applied Physics and Computational Mathematics;Center for Applied Physics and Technology;Peking University;Hebei Key Lab of Optic-electronic Information and Materials;the College of Physics Science and Technology;Hebei University;
..............page:539-546
Accurate spectroscopic constants of the lowest two electronic states in S2 molecule with explicitly correlated method
Changli Wei;Xiaomei Zhang;Dajun Ding;Bing Yan;Institute of Atomic and Molecular Physics;Jilin University;
..............page:547-552
Phase equilibrium of Cd1-xZnxS alloys studied by first-principles calculations and Monte Carlo simulations
Fu-Zhen Zhang;Hong-Tao Xue;Fu-Ling Tang;Xiao-Kang Li;Wen-Jiang Lu;Yu-Dong Feng;State Key Laboratory of Advanced Processing and Recycling of Nonferrous Metals;Department of Materials Science and Engineering;Lanzhou University of Technology;Science and Technology on Surface Engineering Laboratory;Lanzhou Institute of Physics;
..............page:553-559
New developments in the multiscale hybrid energy density computational method
Min Sun;Shanying Wang;Dianwu Wang;Chongyu Wang;Central Iron and Steel Research Institute;Department of Physics;Tsinghua University;
..............page:560-568
Stark effect of the hyperfine structure of ICl in its rovibronic ground state: Towards further molecular cooling
Qing-Hui Wang;Xu-Ping Shao;Xiao-Hua Yang;School of Science;Nantong University;State Key Laboratory of Precision Spectroscopy;East China Normal University;
..............page:569-572
Numerical analyses on optical limiting performances of chloroindium phthalocyanines with different substituent positions
Yu-Jin Zhang;Xing-Zhe Li;Ji-Cai Liu;Chuan-Kui Wang;College of Physics and Electronics;Shandong Normal University;Mathematics and Physics Department;North China Electric Power University;
..............page:573-579
Triple differential cross sections of magnesium in doubly symmetric geometry
S Y Sun;X Y Miao;Xiang-Fu Jia;School of Physics and Information Engineering;Shanxi Normal University;
..............page:580-583
Mobility of large clusters on a semiconductor surface:Kinetic Monte Carlo simulation results
M Esen;A T Tüzemen;M Ozdemir;Vocational School of Adana;Cukurova University;Department of Science and Mathematics Education;Faculty of Education;Cumhuriyet University;Department of Physics;Cukurova University;
..............page:584-588
Cavity linewidth narrowing with dark-state polaritons
Gong-Wei Lin;Jie Yang;Yue-Ping Niu;Shang-Qing Gong;Department of Physics;East China University of Science and Technology;
..............page:589-592
Steady-state linear optical properties and Kerr nonlinear optical response of a four-level quantum dot with phonon-assisted transition
Yan-Chao She;Ting-Ting Luo;Wei-Xi Zhang;Mao-Wu Ran;Deng-Long Wang;College of Physics and Electronic Engineering;Tongren University;School of Physics and Optoelectronices;Xiangtan University;
..............page:593-598
Stationary entanglement between two nanomechanical oscillators induced by Coulomb interaction
Qin Wu;Yin Xiao;Zhi-Ming Zhang;Guangdong Provincial Key Laboratory of Nanophotonic Functional Materials and Devices;Guangdong Provincial Key Laboratory of Quantum Engineering and Quantum Materials;South China Normal University;School of Information Engineering;Guangdong Medical University;
..............page:599-603
Fiber fuse behavior in k W-level continuous-wave double-clad field laser
Jun-Yi Sun;Qi-Rong Xiao;Dan Li;Xue-Jiao Wang;Hai-Tao Zhang;Ma-Li Gong;Ping Yan;Center for Photonics and Electronics;Department of Precision Instrument;Tsinghua University;
..............page:604-607
Frequency doubled femtosecond Ti:sapphire laser with an assisted enhancement cavity
Jin-Wei Zhang;Hai-Nian Han;Lei Hou;Long Zhang;Zi-Jiao Yu;De-Hua Li;Zhi-Yi Wei;Beijing National Laboratory for Condensed Matter Physics;Institute of Physics;Chinese Academy of Sciences;
..............page:608-611
Joint transfer of time and frequency signals and multi-point synchronization via fiber network
Nan Cheng;Wei Chen;Qin Liu;Dan Xu;Fei Yang;You-Zhen Gui;Hai-Wen Cai;Shanghai Key Laboratory of All Solid-State Laser and Applied Techniques;Shanghai Institute of Optics and Fine Mechanics;Chinese Academy of Sciences;Key Laboratory for Quantum Optics;CAS;Shanghai Institute of Optics and Fine Mechanics;Chinese Academy of Sciences;
..............page:612-619
Tunable femtosecond near-infrared source based on a Yb:LYSO-laser-pumped optical parametric oscillator
Wen-Long Tian;Zhao-Hua Wang;Jiang-Feng Zhu;Zhi-Yi Wei;School of Physics and Optoelectronic Engineering;Xidian University;Beijing National Laboratory for Condensed Matter Physics;Institute of Physics;Chinese Academy of Sciences;
..............page:620-623
Tunable, continuous-wave single-resonant optical parametric oscillator with output coupling for resonant wave
Xiong-Hua Zheng;Bao-Fu Zhang;Zhong-Xing Jiao;Biao Wang;The School of Physics and Engineering;Sun Yat-sen University;
..............page:624-627
Optimization of the idler wavelength tunable cascaded optical parametric oscillator based on chirp-assisted aperiodically poled lithium niobate crystal
Tao Chen;Rong Shu;Ye Ge;Zhuo Chen;Key Laboratory of Space Active Opto-Electronics Technology;Shanghai Institute of Technical Physics;Chinese Academy of Sciences;
..............page:628-635
Numerical simulation of modulation to incident laser by submicron to micron surface contaminants on fused silica
Liang Yang;Xia Xiang;Xin-Xiang Miao;Li Li;Xiao-Dong Yuan;Zhong-Hua Yan;Guo-Rui Zhou;Hai-Bing Lv;Wan-Guo Zheng;Xiao-Tao Zu;School of Physical Electronics;University of Electronic Science and Technology of China;Research Center of Laser Fusion;China Academy of Engineering Physics;
..............page:636-643
Data point selection for weighted least square fitting of cavity decay time constant
Xing He;Hu Yan;Li-Zhi Dong;Ping Yang;Bing Xu;Laboratory on Adaptive Optics;Institute of Optics and Electronics;Chinese Academy of Sciences;Key Laboratory on Adaptive Optics;Chinese Academy of Sciences;University of the Chinese Academy of Sciences;
..............page:644-650
Non-Noether symmetries of Hamiltonian systems with conformable fractional derivatives
Lin-Li Wang;Jing-Li Fu;Institute of Mathematical Physics;Zhejiang Sci-Tech University;
..............page:651-656
Two kinds of generalized gradient representations for holonomic mechanical systems
Feng-Xiang Mei;Hui-Bin Wu;School of Aerospace Engineering;Beijing Institute of Technology;School of Mathematics;Beijing Institute of Technology;
..............page:657-660
Analytical study of Cattaneo–Christov heat flux model for a boundary layer flow of Oldroyd-B fluid
F M Abbasi;M Mustafa;S A Shehzad;M S Alhuthali;T Hayat;Department of Mathematics;Comsats Institute of Information Technology;School of Natural Sciences;National University of Science and Technology;NAAM Research Group;Department of Mathematics;Faculty of Science;King Abdulaziz University;Department of Mathematics;Quaid-I-Azam University 45320;
..............page:661-666
Three-dimensional multi-relaxation-time lattice Boltzmann front-tracking method for two-phase flow
Hai-Qiong Xie;Zhong Zeng;Liang-Qi Zhang;State Key Laboratory of Coal Mine Disaster Dynamics and Control;Chongqing University;Department of Engineering Mechanics;Chongqing University;Chongqing Key Laboratory of Heterogeneous Material Mechanics;Chongqing University;
..............page:667-672
Predetermined control of turbulent boundary layer with a piezoelectric oscillator
Xiao-Bo Zheng;Nan Jiang;Hao Zhang;Department of Mechanics;Tianjin University;Tianjin Key Laboratory of Modern Engineering Mechanics;
..............page:673-677
Optimized calculation of the synergy conditions between electron cyclotron current drive and lower hybrid current drive on EAST
Wei Wei;Bo-Jiang Ding;Y Peysson;J Decker;Miao-Hui Li;Xin-Jun Zhang;Xiao-Jie Wang;Lei Zhang;Hefei University of Technology;Institute of Plasma Physics;Chinese Academy of Sciences;CEA;IRFM;Shanxi University of Technology;
..............page:678-686
Numerical study of the effect of water content on OH production in a pulsed-dc atmospheric pressure helium–air plasma jet
Mu-Yang Qian;Cong-Ying Yang;Zhen-dong Wang;Xiao-Chang Chen;San-Qiu Liu;De-Zhen Wang;Department of Physics;Nanchang University;School of Medical;Nanchang University;School of Physics and Optoelectronic Technology;Dalian University of Technology;
..............page:687-693
Effects of q-profiles of a weak magnetic shear on energetic ion excited q=1 mode in tokamak plasmas
Ze-Yu Li;Xian-Qu Wang;Xiao-Gang Wang;State Key Lab of Nuclear Physics and Technology;School of Physics;Peking University;Institute of Fusion Science;School of Physical Science and Technology;Southwest Jiaotong University;Department of Physics;Harbin Institute of Technology;
..............page:694-700
Conversion of an atomic to a molecular argon ion and low pressure argon relaxation
M N Stankov;A P Jovanovi;V Lj Markovi;S N Stamenkovi;Department of Physics;Faculty of Sciences and Mathematics;University of Ni;
..............page:701-709
Evolution of structure and physical properties in Al-substituted Ba-hexaferrites
Alex Trukhanov;Larisa Panina;Sergei Trukhanov;Vitalii Turchenko;Mohamed Salem;National University of Science and Technology MISiS;SSPA Scientific and Practical Materials Research Centre of NAS of Belarus;Joint Institute for Nuclear Research;
..............page:710-715
A new family of sp~3-hybridized carbon phases
Ning Xu;Jian-Fu Li;Bo-Long Huang;Bao-Lin Wang;Department of Physics;Yancheng Institute of Technology;Department of Physics and Materials Science;City University of Hong Kong;
..............page:716-720
Phonon dispersion on Ag(100) surface:A modified analytic embedded atom method study
Xiao-Jun Zhang;Chang-Le Chen;Shaanxi Key Laboratory of Condensed Matter Structures and Properties;Northwestern Polytechnical University;School of Science;Xi’an Polytechnic University;
..............page:721-726
Ab initio investigation of photoinduced non-thermal phase transition in β-cristobalite
Shi-Quan Feng;Hua-Ping Zang;Yong-Qiang Wang;Xin-Lu Cheng;Jin-Sheng Yue;The High Pressure Research Center of Science and Technology;Zhengzhou University of Light Industry;School of Physics and Engineering;Zhengzhou University;Institute of Atomic and Molecular Physics;Sichuan University;Luoyang Sunrui Sprcial Equipment CO.;LTD;
..............page:727-732
Vortices in dipolar Bose–Einstein condensates in synthetic magnetic field
Qiang Zhao;Qiang Gu;Department of Physics;University of Science and Technology Beijing;School of Science;North China University of Science and Technology;
..............page:733-739
Phase transition and critical behavior of spin–orbital coupled spinel ZnV2O4
Li Wang;Rong-juan Wang;Yuan-yuan Zhu;Zhi-hong Lu;Rui Xiong;Yong Liu;Jing Shi;Key Laboratory of Artificial Micro-and Nano-structures of Ministry of Education and School of Physics and Technology;Wuhan University;High Magnetic Field Laboratory;Chinese Academy of Sciences;School of Materials and Metallurgy;Wuhan University of Science and Technology;
..............page:740-745
Characteristics of Li diffusion on silicene and zigzag nanoribbon
Yan-Hua Guo;Jue-Xian Cao;Bo Xu;College of Materials Science and Engineering;Nanjing Tech University;Department of Physics;Xiangtan University;Department of Materials Science and Engineering and National Laboratory of Solid State Microstructures;Nanjing University;
..............page:746-749
Heterogeneous fragmentation of metallic liquid microsheet with high velocity gradient
An-Min He;Pei Wang;Jian-Li Shao;Laboratory of Computational Physics;Institute of Applied Physics and Computational Mathematics;
..............page:750-753
Spin texturing in quantum wires with Rashba and Dresselhaus spin–orbit interactions and in-plane magnetic field
B Gisi;S Sakiroglu; Sokmen;Physics Department;Graduate School of Natural and Applied Sciences;Dokuz Eylül University;Physics Department;Faculty of Science;Dokuz Eylül University;
..............page:754-760
Characterization of vertical Au/β-Ga2O3 single-crystal Schottky photodiodes with MBE-grown high-resistivity epitaxial layer
X Z Liu;C Yue;C T Xia;W L Zhang;State Key Laboratory of Electronic Thin Films and Integrated Devices;School of Microelectronics and Solid-State Electronics;University of Electronic Science and Technology of China;Key Laboratory of Materials for High Power Laser;Shanghai Institute of Optics and Fine Mechanics;Chinese Academy of Sciences;
..............page:761-765
Manipulating coupling state and magnetism of Mn-doped ZnO nanocrystals by changing the coordination environment of Mn via hydrogen annealing
Yan Cheng;Wen-Xian Li;Wei-Chang Hao;Huai-Zhe Xu;Zhong-Fei Xu;Li-Rong Zheng;Jing Zhang;Shi-Xue Dou;Tian-Min Wang;Department of Physics and Center of Materials Physics and Chemistry;Beihang University;Solar Energy Technologies;School of Computing;Engineering and Mathematics;University of Western Sydney;Institute for Superconducting and Electronic Materials;University of Wollongong;Beijing Synchrotron Radiation Facility;Institute of High Energy Physics;Chinese Academy of Sciences;
..............page:766-773
Modulating doping and interface magnetism of epitaxial graphene on SiC(0001)
Pan Zhou;Da-Wei He;Key Laboratory of Luminescence and Optical Information;Ministry of Education;Institute of Optoelectronic Technology;Beijing Jiaotong University;
..............page:774-780
Reverse blocking characteristics and mechanisms in Schottky-drain AlGaN/GaN HEMT with a drain field plate and floating field plates
Wei Mao;Wei-Bo She;Cui Yang;Jin-Feng Zhang;Xue-Feng Zheng;Chong Wang;Yue Hao;Key Lab of Ministry of Education for Wide Band-Gap Semiconductor Materials and Devices;School of Microelectronics;Xidian University;School of Physics and Optoelectronic Engineering;Xidian University;
..............page:781-786
In-situ SAXS study on PET/ PMMT composites during tensile tests
Wei-Dong Cheng;Xiao-Hua Gu;Xue Song;Peng Zeng;Zhao-Jun Wu;Xue-Qing Xing;Guang Mo;Zhong-Hua Wu;College of Materials Science and Engineering;Qiqihar University;Department of Practice Teaching and Equipment Management;Qiqihar University;Institute of High Energy Physics;Chinese Academy of Sciences;
..............page:787-792
Effect of fluence and ambient environment on the surface and structural modification of femtosecond laser irradiated Ti
Umm-i-Kalsoom;Shazia Bashir;Nisar Ali;M Shahid Rafique;Wolfgang Husinsky;Chandra S R Nathala;Sergey V Makarov;Narjis Begum;Institute for Applied Physics;Vienna University of Technology;Centre for Advanced Studies in Physics;GC University Lahore;Department of Physics;The University of Lahore;Department of Basic Sciences and Humanities;University of Engineering and Technology Fasalabad;Department of Physics;University of Engineering and Technology Lahore;P.N.Lebedev Physics Institute RAS;Department of Physics;COMSATS Institute of Information and Technology;
..............page:793-799
Superior material qualities and transport properties of InGaN channel heterostructure grown by pulsed metal organic chemical vapor deposition
Ya-Chao Zhang;Xiao-Wei Zhou;Sheng-Rui Xu;Da-Zheng Chen;Zhi-Zhe Wang;Xing Wang;Jin-Feng Zhang;Jin-Cheng Zhang;Yue Hao;State Key Discipline Laboratory of Wide Band Gap Semiconductor Technology;School of Microelectronics;Xidian University;
..............page:800-805
Detection and formation mechanism of micro-defects in ultrafine pitch Cu Cu direct bonding
Zi-Yu Liu;Jian Cai;Qian Wang;Yu Chen;Institute of Microelectronics;Tsinghua University;Tsinghua National Laboratory for Information Science and Technology;
..............page:806-812
Improved double-gate armchair silicene nanoribbon field-effect-transistor at large transport bandgap
Mohsen Mahmoudi;Zahra Ahangari;Morteza Fathipour;Department of Electrical and Computer Engineering;University of Tehran;Young Researchers and Elite Club;Yadegar-e-Imam Khomeini Shahre-Rey Branch;Islamic Azad University;
..............page:813-820
Quantum dynamics of charge transfer on the one-dimensional lattice:Wave packet spreading and recurrence
V N Likhachev;O I Shevaleevskii;G A Vinogradov;Emanuel Institute of Biochemical Physics;Russian Academy of Sciences;
..............page:821-834
Application of long-range correlation and multi-fractal analysis for the depiction of drought risk
Wei Hou;Peng-Cheng Yan;Shu-Ping Li;Gang Tu;Jing-Guo Hu;National Climate Center;College of Atmospheric Sciences;Lanzhou University;Jilin Meteorological Science Institute;Department of Physics Yangzhou University;
..............page:835-841
Instructions for Authors
..............page:842