Rosenberg Jessie, Shenoi Rajeev V, Krishna Sanjay, Painter Oskar
Thomas J. Watson, Sr., Laboratory of Applied Physics, California Institute of Technology, Pasadena, CA 91125, USA.
Opt Express. 2010 Feb 15;18(4):3672-86. doi: 10.1364/OE.18.003672.
We design a polarization-sensitive resonator for use in mid-infrared photodetectors, utilizing a photonic crystal cavity and a single or double-metal plasmonic waveguide to achieve enhanced detector efficiency due to superior optical confinement within the active region. As the cavity is highly frequency and polarization-sensitive, this resonator structure could be used in chip-based infrared spectrometers and cameras that can distinguish among different materials and temperatures to a high degree of precision.
我们设计了一种用于中红外光电探测器的偏振敏感谐振器,利用光子晶体腔和单金属或双金属等离子体波导,由于有源区内卓越的光学限制,实现了更高的探测器效率。由于该腔对频率和偏振高度敏感,这种谐振器结构可用于基于芯片的红外光谱仪和相机,能够高精度地区分不同材料和温度。