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IR detectors with adaptive responsivity and wavelength

机译:具有自适应响应性和波长的红外探测器

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Microbolometers and other thermal detectors have traditionally been limited to seeing objects in a broad wavelength band at a single sensitivity. Recent advances in interface heat transfer and optical cavity design promise to change that. In this paper, we present recent work on thermal infrared detectors with tunable responsivity and wavelength. First, we demonstrate that extended dynamic range in thermal detectors can be achieved by electrostatically bringing a portion of the detector support structure in contact with the substrate. The exact amount of heat transfer can be controlled by adjusting the contact area and pressure. The thermal conductance and responsivity can be switched more than an order of magnitude using this technique. Next, we demonstrate that a wavelength tunable device in the LWIR can be achieved by modifying the structure of a microbolometer to incorporate a modified Gires Tournois optical cavity. The cavity couples light at a single wavelength into the microbolometer while other wavelengths are rejected. We demonstrate that resonance can be tuned from 8.7 to 11.1 μm with applied voltages from 0 to 42 V. The FWHM of the resonance can be switched between around 1.5 urn in a narrow-band mode and 2.83 μm in a broad-band mode.
机译:传统上,微致热器和其他热检测器的限制在单个灵敏度下看到宽波长带中的物体。界面传热和光学腔设计的最新进展承诺改变这一点。在本文中,我们在具有可调响应性和波长的热红外探测器上提出了最近的工作。首先,我们证明热检测器中的延长动态范围可以通过静电地使一部分检测器支撑结构与基板接触来实现。可以通过调节接触面积和压力来控制热传递的确切量。可以使用该技术切换热传导和响应度,以至于多个幅度。接下来,我们证明了通过修改微倍频仪的结构来结合改进的Gires Tournois光学腔来实现LWIR中的波长可调装置。腔圈在单个波长下耦合到微汽力计的情况下,而其他波长被拒绝。我们证明,谐振可以从8.7到11.1μm调谐,施加电压为0到42V。谐振的FWHM可以在窄带模式下在窄带模式下在大约1.5 URN之间切换到2.83μm之间。

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