[1] |
XIANG X B, DU W H, CHANG X L, et al. The study on high effi-cient GaAs/Ge solar cells[J]. Solar Energy Materials & Solar Cells, 2001, 68(1):97-103. |
[2] |
TYAGI R, SINGH M, THIRUMAVALAVAN M, et al. The influence of As and Ga prelayers on the metal-organic chemical vapor deposition of GaAs/Ge[J]. Journal of Electronic Materials, 2002, 31(3):234-237. doi: 10.1007/s11664-002-0212-6 |
[3] |
GARG A, KAPOOR A, TRIPATH K N. Laser-induced damaged studies in GaAs[J]. Optics & Laser Technology, 2003, 35(1):21-24. |
[4] |
XUE Q, WU W H, YE Y X, et al. Property degradation of GaAs/Ge solar cells after femtosecond laser irradiation[J]. Laser & Optoelectronics Progress, 2015, 52(4):041405(in Chinese). |
[5] |
ZHU R Zh, WANG R, JIANG T, et al. Research of laser irradiation effect on monocrystalline silicon solar cells and single junction GaAs solar cells[J].Journal of Infrared and Millimeter Waves, 2015, 34(4):479-485(in Chinese). |
[6] |
SHANGHAI INSTITUTE OF SPACE POWER-SOURCES. Physical power technology[M].Beijing:Science Press, 2015:64-65(in Chinese). |
[7] |
STEINSIEK F, WEBER K H, FOTH W P, et al. Wireless power transmission experiment as an early contribution to planetary exploration missions[C]//International Astronautical Congress of the International Astronautical Federation. Bremen, Germany: International Academy of Astronautics, and International Institute of Space Law, 2003: 169-176. |
[8] |
BLACKWELL T. Recent demonstration of laser power beaming at DFRC and MSFC[C]//AIP Conference Proceeding Beamed Energy Propulsion. New York, USA: American Institute of Physics, 2005: 73-85. |
[9] |
KAWASHIMA N, TAKEDA K, TABE K. Application of the laser energy transmission technology to drive a small airplane[J]. Chinese Optics Letters, 2007, 5(s1):109-110. |
[10] |
QIU D D, JIN H S, SUN Y J. Damage effects research of solar cells under the irradiation of 1064nm CW laser[J]. Laser Journal, 2013, 34(2):23-24(in Chinese). |
[11] |
YANG H, LU J, ZHOU D Y, et al. Experimental study of 1070nm continuous wave fiber laser irradiation effect on three-junction GaAs solar cell[J]. Laser Technology, 2017, 41(3):318-321(in Chinese). |
[12] |
SHANGHAI INSTITUTE OF SPACE POWER-SOURCES. Physical power technology[M].Beijing:Science Press, 2015:45-47(in Chinese). |
[13] |
SHI J Q, OU H Y, MA Z Y, et al. A study of saturated current density of solar cells with pn junction[J]. Journal of Huazhong University of Science and Technology(Natural Science Edition), 2001, 29(4):24-26(in Chinese). |
[14] |
LANDIS G A. Photovoltaic receivers for laser beamed power in space[J]. Journal of Propulsion & Power, 1993, 9(1):1494-1502. |
[15] |
LI B B, LI X J. Numerical simulation of photovoltaic cell temperature field of laser power beaming[J]. Laser Technology, 2017, 41(4):537-537(in Chinese). |
[16] |
MEYER J R, KRUER M R, BARTOLI F J. Optical heating in semiconductors:laser damage in Ge, Si, InSb, and GaAs[J]. Journal of Applied Physics, 1980, 51(10):5513-5522. doi: 10.1063/1.327469 |