Characterization of relativistic electrons generated by a cone guiding laser pulse
Liu Hong-Jie a)b);Gu Yu-Qiua)b);Zhou Wei-Min a);Yu Jin-Qing a);Zhu Bin a);Wu Yu-Chi a);Shan Lian-Qianga);Wen Xian-Lun a);Li Fang a);Qian Feng a)c);Cao Lei-Feng a)b);Zhang Bao-Han a)b);and Zheng Zhi-Jiana)b) a) Laser Fusion Research Center;China Academy of Engineering Physics;Mianyang 621900;China b) National Key Laboratory of Plasma Physics;Mianyang 621900;China c) College of Optoelectronic Engineering;Chongqing University;Chongqing 400044;China
..............page:5-9
Solving a class of burning disturbed problem with shock layers
Ouyang Cheng a);Chen Li-Hua b);and Mo Jia-Qic) a) Faculty of Science;Huzhou Teacher College;Huzhou 313000;China b) Department of Mathematics and Computer Science;Fuqing Branch of Fujian Normal University;Fuqing 350300;China c) Department of Mathematics;Anhui Normal University;Wuhu 241003;China
..............page:19-22
Immunizations on small worlds of tree-based wireless sensor networks
Li Qiao a);Zhang Bai-Hai a);Cui Ling-Guo a);Fan Zhun b);and Athanasios V.Vasilakos c) a) School of Automation;Beijing Institute of Technology;Beijing 100081;China b) Department of Mechanical Engineering;Technical University of Denmark;2800 Kgs.Lyngby;Denmark c) Department of Computer and Telecommunications Engineering;University of Western Macedonia;Kozani;Greece
..............page:29-37
..............page:92-103
..............page:104-110
Image encryption based on a delayed fractional-order chaotic logistic system
Wang Zhen a);Huang Xia b);Li Ning a);and Song Xiao-Na c) a) College of Information Science and Engineering;Shandong University of Science and Technology;Qingdao 266590;China b) Key Laboratory of Robotics and Intelligent Technology;College of Information and Electrical Engineering;Shandong University of Science and Technology;Qingdao 266590;China c) College of Electronic and Information Engineering;Henan University of Science and Technology;Luoyang 471003;China
..............page:111-116
..............page:117-122
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..............page:130-136
..............page:137-143
..............page:144-148
..............page:149-156
..............page:157-162
..............page:163-170
..............page:171-182
..............page:183-188
..............page:189-193
..............page:194-202
Dual-band frequency selective surface with large band separation and stable performance
Zhou Hang a);Qu Shao-Bo a);Peng Wei-Dong b);Lin Bao-Qin a);Wang Jia-Fu a);Ma Hua a);Zhang Jie-Qiu a);Bai Peng b);Wang Xu-Hua b);and Xu Zhuo c) a) College of Science;Air Force Engineering University;Xi’an 710051;China b) Synthetic Electronic Information System Research Department;Air Force Engineering University;Xi’an 710051;China c) Electronic Materials Research Laboratory;Key Laboratory of the Ministry of Education;Xi’an Jiaotong University;Xi’an 710049;China
..............page:203-206
Tunable frequency selective surface with a shorted ring slot
Jia Hong-Yan a);Feng Xiao-Guo b);and Sheng Cui-Xia a) a) College of Electrical and Electronic Engineering;Shandong University of Technology;Zibo 255049;China b) Key Laboratory of Optical System Advanced Manufacturing Technology;Changchun Institute of Optics and Fine Mechanics and Physics;Chinese Academy of Sciences;Changchun 130033;China
..............page:207-210
..............page:211-217
..............page:218-224
..............page:225-230
..............page:231-236
..............page:237-244
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..............page:251-257
..............page:258-263
..............page:264-268
..............page:269-277
..............page:278-282
Level crossing in a two-photon Jaynes-Cummings model
Ren Xue-Zao a);Cong Hong-Lu b);Liao Xu a);and Li Lei a) a) School of Science;Southwest University of Science and Technology;Mianyang 621010;China b) Physics Group;Beijing Jiao Tong University Haibin College;Huanghua 061100;China
..............page:283-286
..............page:287-291
..............page:292-297
..............page:298-303
..............page:304-311
..............page:312-319
Mitigation of laser damage growth in fused silica by using a non-evaporative technique
Jiang Yong a)b);Liu Chun-Ming a);Luo Cheng-Si a);Yuan Xiao-Dong b);Xiang Xia a);Wang Hai-Jun b);He Shao-Bo b);Lü Hai-Bing b);Ren Wei b);Zheng Wan-Guo b);and Zu Xiao-Tao a) a) Department of Applied Physics;University of Electronic Science and Technology of China;Chengdu 610054;China b) Research Center of Laser Fusion;China Academy of Engineering Physics;Mianyang 621900;China
..............page:320-326
Growth and spectroscopic characteristics of Nd-doped PbWO4 crystal
Wang Qing-Guo a)b);Su Liang-Bi a);Li Hong-Juna);Xiong Wei a);Yuan Hui a);Zheng Li-He a);Xu Xiao-Dong a);Wu Feng a);Tang Hui-Li a);Jiang Da-Peng a);and Xu Jun a) a) Key Laboratory of Transparent and Opto-Functional Inorganic Materials;Shanghai Institute of Ceramics;Chinese Academy of Sciences;Shanghai 201800;China b) Graduate University of the Chinese Academy of Sciences;Beijing 100039;China
..............page:327-333
..............page:334-338
Design and fabrication of broadband rugate filter
Zhang Jun-Chao a)b);Fang Ming a);Shao Yu-Chuan a)b);Jin Yun-Xia a);and He Hong-Bo a) a) Key Laboratory of Material Science and Technology for High Power Lasers;Shanghai Institute of Optics and Fine Mechanics;Chinese Academy of Sciences;Shanghai 201800;China b) Optic and Laser Division;National Institute of Metrology;Beijing 100013;China
..............page:339-343
..............page:344-351
..............page:352-356
..............page:357-367
..............page:368-375
Asymmetry of the water flux induced by the deformation of a nanotube
He Jun-Xia a);Lu Hang-Jun a);Liu Yang b);Wu Feng-Min a);Nie Xue-Chuan a);Zhou Xiao-Yan a);and Chen Yan-Yana) a) Department of Physics;Zhejiang Normal University;Jinhua 321004;China b) Department of Mechanical Engineering;the Hong Kong Polytechnic University;Hong Kong;China
..............page:376-381
..............page:382-386
Effect of multicomponent dust grains in a cold quantum dusty plasma
Yang Xiu-Feng a);Wang Shan-Jin b);Chen Jian-Min c);Shi Yu-Ren a);Lin Mai-Mai a);and Duan Wen-Shan a) a) College of Physics and Electronic Engineering;Northwest Normal University;Lanzhou 730070;China b) School of Electronic Engineering;Dongguan University of Technology;Dongguan 523106;China c) State Key Laboratory of Solid Lubrication;Lanzhou Institute of Chemical Physics;Chinese Academy of Science;Lanzhou 730000;China
..............page:387-393
..............page:394-403
..............page:404-408
..............page:409-413
..............page:414-421
..............page:422-427
..............page:428-434
..............page:435-440
..............page:441-444
..............page:445-448
First-principles investigation on the elastic stability and thermodynamic properties of Ti2SC
Yang Ze-Jin a);Guo Yun-Dong b);Linghu Rong-Feng c);Cheng Xin-Lu d);and Yang Xiang-Dong d) a) School of Science;Zhejiang University of Technology;Hangzhou 310023;China b) School of Physics;Neijiang Normal University;Neijiang 641112;China c) School of Physics;Guizhou Normal College;Guiyang 550018;China d) Institute of Atomic and Molecular Physics;Sichuan University;Chengdu 610065;China
..............page:449-458
..............page:459-467
Ab initio study of H and He migrations in β-phase Sc,Y,and Er hydrides
Chen Ru-Cheng a);Yang Li ab);Dai Yun-Ya a);Zhu Zi-Qiang a);Peng Shu-Ming c);Long Xing-Gui c);Gao Fei b);and Zu Xiao-Tao a) a) Department of Applied Physics;University of Electronic Science and Technology of China;Chengdu 610054;China b) Pacific Northwest National Laboratory;P.O.Box 999;Richland WA 99352;USA c) Institute of Nuclear Physics and Chemistry;China Academy of Engineering Physics;Mianyang 621900;China
..............page:468-476
Impact of back-gate bias on the hysteresis effect in partially depleted SOI MOSFETs
Luo Jie-Xin a)b);Chen Jing a);Zhou Jian-Hua a)b);Wu Qing-Qinga)b);Chai Zhan a);Yu Tao a)c);and Wang Xi a) a) State Key Laboratory of Functional Materials for Informatics;Shanghai Institute of Microsystem and Information Technology;Shanghai 200050;China b) Graduate University of Chinese Academy of Sciences;Beijing 100049;China c) The Key Laboratory of Thin Films of Jiangsu;Departments of Physics;Soochow University;Suzhou 215006;China
..............page:477-482
..............page:483-490
..............page:491-497
..............page:498-504
..............page:505-511
..............page:512-518
..............page:519-522
Implementation of LDA+DMFT with the pseudo-potential-plane-wave method
Zhao Jian-Zhou a)b);Zhuang Jia-Ning a);Deng Xiao-Yu a)c);Bi Yan b);Cai Ling-Cang b);Fang Zhong a);and Dai Xi a) a) Institute of Physics;Chinese Academy of Sciences;Beijing 100190;China b) National key Laboratory of Shock Wave and Detonation Physics;Institute of Fluid Physics;China Academy of Engineering Physics;Mianyang 621900;China c) Centre de Physicque Th’eorique;Ecole Polytechnique;CNRS;91128 Palaiseau Cedex;France
..............page:523-535
..............page:536-540
..............page:541-545
A possible mechanism for magnetar soft X-ray/γ-ray emission
Gao Zhi-Fu a)b)c);Peng Qiu-He d);Wang Na a)b);and Chou Chih-Kang e) a) Xinjiang Astronomical Observatory;Chinese Academy of Sciences;Urumqi 830011;China b) Key Laboratory of Radio Astronomy;Chinese Academy of Sciences;Nanjing 210008;China c) Graduate University of the Chinese Academy of Sciences;Beijing 100080;China d) Department of Astronomy;Nanjing University;Nanjing 210093;China e) National Astronomical Observatories;Chinese Academy of Sciences;Beijing 100012;China
..............page:546-558
..............page:559-564
..............page:565-572
..............page:573-580
Improving lithographic masks with the assistance of indentations
Guo Ying-Nan a);Li Xu-Feng b);Pan Shi a);Wang Qiao a);Wang Shuo a);and Wu Yong-Kuan a) a) School of Physics and Optoelectronic Technology;Dalian University of Technology;Dalian 116024;China b) School of Applied Science;Taiyuan University of Science and Technology;Taiyuan 030024;China
..............page:581-586
Plasmons in a free-standing nanorod with a two-dimensional parabolic quantum well caused by surface states
Song Ya-Feng a);Lü Yan-Wu b);Wen Wei c);Liu Xiang-Lin a);Yang Shao-Yan a);Zhu Qin-Sheng a);and Wang Zhan-Guo a) a) Key Laboratory of Semiconductor Materials Science;Institute of Semiconductors;Chinese Academy of Sciences;Beijing 100083;China b) Department of Physics;Beijing Jiaotong University;Beijing 100044;China c) State Key Laboratory for Superlattices and Microstructures;Institute of Semiconductors;Chinese Academy of Sciences;Beijing 100083;China
..............page:587-594
Graphene films grown on sapphire substrates via solid source molecular beam epitaxy
Tang Jun a)b);Kang Chao-Yang;Li Li-Min a);Liu Zhong-Liang c);Yan Wen-Sheng a);Wei Shi-Qiang a);and Xu Peng-Shou a) a) National Synchrotron Radiation Laboratory;University of Science and Technology of China;Hefei 230029;China b) Hefei IRICO Epilight Technology Co.;Ltd.;Hefei 230011;China c) School of Physics and Electronic Information;Huaibei Normal University;Huaibei 235000;China
..............page:595-599
..............page:600-605
..............page:606-610
..............page:611-615
Vortex lines in a ferromagnetic spin-triplet superconductor
Zhao Li a);Yang Jie a);Xie Qun-Ying a)b);Tian Miao c);and Duan Yi-Shi a) a) Institute of Theoretical Physics;Lanzhou University;Lanzhou 730000;China b) School of Information Science and Engineering;Lanzhou University;Lanzhou 730000;China c) School of Mathematics;Physics and Software Engineering;Lanzhou Jiaotong University;Lanzhou 730000;China
..............page:616-624
..............page:625-630
The crystal structure,magnetism,and colossal magnetoresistance of Y2CrS4
Liu Rong-Deng a)b);Liu Yun-Tao a);He Lun-Hua b);Wang Zhi-Cui b);Chen Dong-Feng a);and Wang Fang-Wei b) a) China Institute of Atomic Energy;Beijing 102413;China b) State Key Laboratory of Magnetism;Beijing National Laboratory for Condensed Matter Physics;Institute of Physics;Chinese Academy of Sciences;Beijing 100190;China
..............page:631-634
..............page:635-639
..............page:640-644
..............page:645-650
..............page:651-655
..............page:656-660
..............page:661-665
..............page:666-672
..............page:673-678
..............page:679-684
Highly efficient blue fluorescent OLEDs with doped double emitting layers based on p-n heterojunctions
Su Yue-Ju a)b)c);Wu Xiao-Ming a)b)c);Hua Yu-Lin a)b)c);Shen Li-Ying a)b)c);Jiao Zhi-Qiang a)b)c);Dong Mu-Sen a)b)c);and Yin Shou-Gen a)b)c) a) School of Materials Science & Engineering;Tianjin University of Technology;Tianjin 300384;China b) Key Laboratory of Display Materials & Photoelectric Devices of Ministry of Education;Tianjin University of Technology;Tianjin 300384;China c) Tianjin Key Laboratory for Photoelectric Materials & Devices;Tianjin University of Technology;Tianjin 300384;China
..............page:685-689
..............page:690-695
..............page:696-700
..............page:701-704