Ta2O5/SiO2 dbr改善了InAs QD RC-SACM-APD的光谱响应

Dong Ho Kim, H. Song, C. Roh, C. Hahn, Shi-Jong Leem, N. Tsurumachi, Tae Geun Kim
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引用次数: 1

摘要

本文报道了使用介质Ta2O5/SiO2顶部分布布拉格反射器(DBRs)提高量子效率(QE),从而改善了InAs QD谐振腔分离吸收、电荷和倍增雪崩探测器(RC-SACM-APD)的光谱响应。为了使QE最大化,顶部和底部dbr的反射率分别被数值设计为70%和99.1%。顶部dbr增强后的InAs QD RC-SACM-APD在1098 nm处的光谱响应特性得到了显著改善,接近1100 nm的目标波长,半峰全宽(FWHM)为19 nm。光致发光(PL)光谱在1101 nm处显示一个强而窄的单模峰。光谱线峰的频宽窄至8 nm,光谱与光谱线峰的波长差小至3 nm。
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Improved spectral response of an InAs QD RC-SACM-APD with Ta2O5/SiO2 DBRs
We report the improvement in the spectral response of an InAs QD resonant-cavity separate absorption, charge, and multiplication avalanche photodetector (RC-SACM-APD) by increasing the quantum efficiency (QE) using dielectric Ta2O5/SiO2 top distributed Bragg reflectors (DBRs). The reflectivities of the top and bottom DBRs were numerically designed to be 70 % and 99.1 %, respectively, in order to maximize the QE. The spectral response characteristics of the InAs QD RC-SACM-APD with enhanced top DBRs was remarkably improved at 1098 nm, which is close to the target wavelength of 1100 nm, and its full width at half-maximum (FWHM) was 19 nm. The photoluminescence (PL) spectra revealed an intense and narrow single-mode peak at 1101 nm. The FWHM of the PL peak was as narrow as 8 nm and the difference in wavelength between the spectrum and the PL peak was as small as 3 nm.
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