首页> 外文会议>Optically Based Biological and Chemical Detection for Defence III; Proceedings of SPIE-The International Society for Optical Engineering; vol.6398 >Deep ultraviolet photodetectors grown by gas source molecular beam epitaxy on sapphire and AlGaN/sapphire substrates
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Deep ultraviolet photodetectors grown by gas source molecular beam epitaxy on sapphire and AlGaN/sapphire substrates

机译:气体源分子束外延在蓝宝石和AlGaN /蓝宝石衬底上生长的深紫外光电探测器

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摘要

Optically-based chemical and biological sensors require optoelectronic devices with specific emission and detection wavelength ranges. Semiconductor optoelectronic devices applicable to this sensing are of particular interest due to their low power consumption, compact size, long lifetime, and low cost. We report the electrical and optical properties of deep UV p-i-n photodiodes (PDs) based on short period superlattices (SPSLs) of AlN/AlGaN. All device and test structures are grown by gas source molecular beam epitaxy with ammonia on sapphire and AlGaN/sapphire substrates. AlGaN/sapphire substrates were grown by stress controlled hydride vapor phase epitaxy (HVPE). The cutoff wavelength of PDs based on these SPSLs can be varied from 250 to 280 nm by changing the SPSL barrier/well thickness ratio. For mesa diodes with 150 μm diameter we obtain extremely low dark leakage current of ~3 pA/cm~2, and high zero-bias resistance of ~6 x 10~(14) Ω. A cutoff wavelength of 247 nm is obtained for these devices with four orders of magnitude rejection by 315 nm. We obtain a maximum responsivity of 60 mA/W.
机译:基于光学的化学和生物传感器需要具有特定发射和检测波长范围的光电设备。由于其低功耗,紧凑的尺寸,长寿命和低成本,适用于这种传感的半导体光电器件特别受到关注。我们报告基于AlN / AlGaN的短周期超晶格(SPSL)的深UV p-i-n光电二极管(PDs)的电学和光学特性。所有器件和测试结构均通过气源分子束外延并在蓝宝石和AlGaN /蓝宝石衬底上使用氨进行生长。通过应力控制氢化物气相外延(HVPE)生长AlGaN /蓝宝石衬底。通过更改SPSL势垒/阱厚度比,可以将基于这些SPSL的PD的截止波长从250 nm更改为280 nm。对于直径为150μm的台面二极管,我们获得的暗漏电流极低,约为〜3 pA / cm〜2,而零偏电阻较高,约为〜6 x 10〜(14)Ω。对于这些器件,获得的截止波长为247 nm,具有四个数量级的315 nm抑制比。我们获得60 mA / W的最大响应度。

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