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Graphene as a novel single photon counting optical and ir photodetector

机译:石墨烯作为新型单光子计数光学和红外光电探测器

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Bilayer graphene has many unique optoelectronic properties [1], including a tuneable band gap, that make it possible to develop new and more efficient optical and nanoelectronic devices. We have developed a Monte Carlo simulation for a single photon counting photodetector incorporating bilayer graphene. Our results show that, conceptually it would be feasible to manufacture a single photon counting photodetector (with colour sensitivity) from bilayer graphene for use across both optical and infrared wavelengths. Our concept exploits the high carrier mobility and tuneable band gap associated with a bilayer graphene approach. This allows for low noise operation over a range of cryogenic temperatures, thereby reducing the cost of cryogens with a trade off between resolution and operating temperature. The results from this theoretical study now enable us to progress onto the manufacture of prototype photon counters at optical and IR wavelengths that may have the potential to be ground-breaking in some scientific research applications.
机译:双层石墨烯具有许多独特的光电特性[1],包括可调节的带隙,这使得开发新型和更高效的光学和纳米电子器件成为可能。我们已经为结合了双层石墨烯的单光子计数光电探测器开发了Monte Carlo模拟。我们的结果表明,从概念上讲,由双层石墨烯制造单个光子计数光电探测器(具有色敏性)在光学和红外波长范围内使用都是可行的。我们的概念利用了与双层石墨烯方法相关的高载流子迁移率和可调节带隙。这允许在一定范围的低温温度下进行低噪声操作,从而在分辨率和工作温度之间进行权衡,从而降低了制冷剂的成本。这项理论研究的结果现在使我们能够继续进行光学和红外波长的原型光子计数器的制造,这在某些科学研究应用中可能具有突破性的潜力。

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