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Recent advances on long wave p on n HgCdTe infrared Technology

机译:N HGCDTE红外技术长波P的最新进展

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SOFRADIR is the worldwide leader on the cooled IR detector market for high-performance space, military and security applications thanks to a well mastered Mercury Cadmium Telluride (MCT) technology, and recently thanks to the acquisition of III-V technology: InSb, InGaAs, and QWIP quantum detectors. As a result, strong and continuous development efforts are deployed to deliver cutting edge products with improved performances in terms of spatial and thermal resolution, dark current, quantum efficiency, low excess noise and high operability. The actual trend in quantum IR detector development is the design of very small pixel, with the higher achievable operating temperature whatever the spectral band. Moreover maintaining the detector operability and image quality at higher temperature moreover for long wavelength is a major issue. This paper presents the recent developments achieved at Sofradir to meet this challenge for LW band MCT extrinsic p on n technology with a cut-off wavelength of 9.3um at 90K. State of the art performances will be presented in terms of dark current, operability and NETD temperature dependency, quantum efficiency, MTF, and RFPN (Residual Fixed Pattern Noise) stability up to 100K.
机译:SOFRADIR是SOFRAD IR探测器市场的全球领导者,用于高性能空间,军事和安全应用,这归功于掌握汞镉碲化镉(MCT)技术,最近由于收购III-V技术:INEB,INGAAS,和QWIP量子探测器。因此,部署了强大和持续的开发工作,以在空间和热分辨率,暗电流,量子效率,低噪声和高可操作性方面提供更好的性能。量子红外探测器的实际趋势是非常小的像素的设计,可实现的可实现温度越高。此外,在较高温度下保持检测器可操作性和图像质量来实现长波长是一个主要问题。本文介绍了Sofradir最近实现的发展,以满足LW Band MCT外在P在N技术上的挑战,其截止波长为9.3um。最先进的性能将以暗电流,可操作性和NetD温度依赖性,量子效率,MTF和RFPN(剩余固定图案噪声)稳定性提供至100K的稳定性。

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