研究了p-In Ga N层厚度对p-i-n结构In Ga N太阳电池性能的影响。模拟计算发现,随着p-In Ga N层厚度的增加,In Ga N太阳电池效率降低。较差的p-In Ga N欧姆接触特性会破坏In Ga N太阳电池性能。计算结果还表明,无论欧姆接触特性好坏,随着...研究了p-In Ga N层厚度对p-i-n结构In Ga N太阳电池性能的影响。模拟计算发现,随着p-In Ga N层厚度的增加,In Ga N太阳电池效率降低。较差的p-In Ga N欧姆接触特性会破坏In Ga N太阳电池性能。计算结果还表明,无论欧姆接触特性好坏,随着p-In Ga N层厚度的增加,短路电流下降是导致In Ga N电池效率降低的主要原因。选择较薄的p-In Ga N层有利于提高p-i-n结构In Ga N太阳电池的效率。展开更多
研究了新型光波导阵列电光快速扫描器的馈电特性和馈电方式.针对N I N(P I P)型结构和P I N型结构的光波导阵列电光扫描器,导出了相应的馈电电压公式,提出了一种能最大限度降低驱动电压的新方法,并据此研制了4波导P I N阵列扫描器的控...研究了新型光波导阵列电光快速扫描器的馈电特性和馈电方式.针对N I N(P I P)型结构和P I N型结构的光波导阵列电光扫描器,导出了相应的馈电电压公式,提出了一种能最大限度降低驱动电压的新方法,并据此研制了4波导P I N阵列扫描器的控制电源,成功地进行了电光扫描实验.展开更多
According to the plasma dispersion effect of silicon(Si),a silicon-on-insulator(SOI) based variable optical attenuator(VOA) with p-i-n lateral diode structure is demonstrated in this paper.A wire rib waveguide with su...According to the plasma dispersion effect of silicon(Si),a silicon-on-insulator(SOI) based variable optical attenuator(VOA) with p-i-n lateral diode structure is demonstrated in this paper.A wire rib waveguide with sub-micrometer cross section is adopted.The device is only about 2 mm long.The power consumption of the VOA is 76.3 mW(0.67 V,113.9 mA),and due to the carrier absorption,the polarization dependent loss(PDL) is 0.1dB at 20dB attenuation.The raise time of the VOA is 34.5 ns,the fall time is 37 ns,and the response time is 71.5 ns.展开更多
文摘研究了p-In Ga N层厚度对p-i-n结构In Ga N太阳电池性能的影响。模拟计算发现,随着p-In Ga N层厚度的增加,In Ga N太阳电池效率降低。较差的p-In Ga N欧姆接触特性会破坏In Ga N太阳电池性能。计算结果还表明,无论欧姆接触特性好坏,随着p-In Ga N层厚度的增加,短路电流下降是导致In Ga N电池效率降低的主要原因。选择较薄的p-In Ga N层有利于提高p-i-n结构In Ga N太阳电池的效率。
基金supported by the National High Technology Research and Development Program of China(No.2013AA031402)
文摘According to the plasma dispersion effect of silicon(Si),a silicon-on-insulator(SOI) based variable optical attenuator(VOA) with p-i-n lateral diode structure is demonstrated in this paper.A wire rib waveguide with sub-micrometer cross section is adopted.The device is only about 2 mm long.The power consumption of the VOA is 76.3 mW(0.67 V,113.9 mA),and due to the carrier absorption,the polarization dependent loss(PDL) is 0.1dB at 20dB attenuation.The raise time of the VOA is 34.5 ns,the fall time is 37 ns,and the response time is 71.5 ns.