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Highly Narrow-Band Polarization-Sensitive Solar-Blind Photodetectors Based on beta-Ga2O3 Single Crystals

机译:基于Beta-Ga2O3单晶的高度窄带偏振敏感太阳盲光电探测器

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摘要

To suppress noise from full daylight background or environmental radiation, a spectrally selective solar-blind photodetector is widely required in many applications that need detection of light within a specific spectral range. Here, we present highly narrow-band solar-blind photodetectors by light polarization engineering of the anisotropic transitions in beta-Ga2O3 single crystals. The polarized transmittance characteristics reveal that direct transitions from valance subbands to the conduction band minimum are tuned between 4.53 and 4.76 eV for the light polarized E//c and E//b. The polarization-dependent photoresponsivity verifies that the order of fundamental band-to-band transitions obeys well the selection rules in terms of the valence-band splitting in the beta-Ga2O3 monoclinic crystal band structure. By combining an orthogonally aligned identical beta-Ga2O3 (100) single crystal filter with a detector measured at a chopper frequency of 17 Hz, a highly narrow-band detection is produced with a peak responsivity of 0.23 A/W at 262 nm, an EQE of 110%, a bandwidth of 10 nm, a light rejection ratio over 800, and a response time of 0.86 ms. This provides a new paradigm for a narrow-band solar-blind photodetector with broad applications where background noise emission needs to be suppressed.
机译:为了抑制来自完整日光背景或环境辐射的噪声,在需要检测特定光谱范围内的光的许多应用中广泛需要光谱选择性太阳能盲光度探测器。这里,我们通过β-GA2O3单晶的各向异性转变的光极化工程呈现高窄带太阳盲光电探测器。偏振透射率特性揭示了从算命子带到导通带最小的直接转变在4.53和4.76eV之间调谐,用于光极化E // C和E // B。偏振依赖性光响应性验证基本带对频段转换的顺序在β-GA2O3单斜晶带结构中的价带分裂方面遵守选择规则。通过将正交对准的相同的相同β-Ga2O3(100)单晶过滤器与在17Hz的斩波频率下测量的检测器,在262nm的峰值响应度下产生高度窄的带检测,例如在262nm处, 110%,带宽为10nm,射击比超过800,响应时间为0.86ms。这为窄带太阳能盲光电探测器提供了一种新的范例,具有广泛的应用,其中需要抑制背景噪声发射。

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