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Wavelength selective detection using excitonic resonances in multiquantum-well structures

机译:利用多量子阱结构中的激子共振进行波长选择性检测

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The wavelength and voltage dependence of photocurrent near excitonic resonances are used to study the wavelength selectivity of p-i(multiple quantum well, or MQW)-n photodiode structures with a parallel sequence of optical bits, each with a different wavelength. The selectivity is considered good if the state of a lambda /sub i/ wavelength bit can be detected regardless of lambda /sub j/(j not=i) state of the bits. Photocurrent is found to have very good selectivity only if lambda /sub j/ bits are all zero, i.e., the optical information is serial, but it is also found that differential photocurrent ( Delta I/sub ph// Delta V) provides a good selectivity for random states of lambda /sub j/ bits (i.e., parallel input). Four channel selectivity is demonstrated at 200 K. Specifically designed quantum-well structures can greatly improve this selectivity.
机译:接近激子共振的光电流的波长和电压依赖性用于研究具有平行光位序列的p-i(多量子阱或MQW)-n光电二极管结构的波长选择性,每个光位具有不同的波长。如果可以检测到λ/ sub i /波长位的状态而与位的λ/ sub j /(j not = i)状态无关,则该选择性被认为是良好的。仅当λ/ sub j /位全为零(即光学信息是串行的)时,才发现光电流具有很好的选择性,但是还发现差分光电流(Delta I / sub ph // Delta V)可以提供很好的选择性。 Lambda / sub j /位(即并行输入)的随机状态的选择性。在200 K下证明了四通道选择性。专门设计的量子阱结构可以大大提高这种选择性。

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