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Qd Technology And Market Prospects In The Sectors Of Space Exploration, Biomedicine, Defense, And Security

机译:太空探索,生物医学,国防和安全领域的Qd技术和市场前景

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摘要

Quantum dots (QD) are a unique subset of nanomaterials characterized by their extraordinary quantum confinement behaviour. Even though the quantum dot industry is still in its infancy with revenues now reaching $10 million, it is expected to surpass $500 million in 2009. However, in order to leverage the full potential of the QD technology, new fabrication processes must be developed to attain high detectivity and high operating temperature (HOT) photodetector devices. The Quantum Dot Infrared Photodetectors (QDIPs) possess an immense potential for civilian and military applications due to the distinct characteristics stemming from their dimensionality - which provides 3D carrier confinement and therncapacity for normal-incidence detection - and their amenability to bandgap engineering - which allows tailoring the peak and cutoff wavelengths according to custom needs. The QDIPs, especially when optimized to operate at higher temperatures, can become critical components in space exploration, defence and security, optical communication, quantum computing and cryptography, and medical imaging applications. Robust and reliable solutions for these fields will command a premium position in the marketplace as by responding to the societal need for secure electronic transactions, exponentially faster data processing, and higher quality diagnostic tools.
机译:量子点(QD)是纳米材料的独特子集,其特征在于其非凡的量子限制行为。即使量子点行业仍处于起步阶段,其收入现在已经达到1000万美元,但预计2009年将超过5亿美元。但是,为了充分利用QD技术的全部潜力,必须开发新的制造工艺来实现高探测性和高工作温度(HOT)光电探测器设备。量子点红外光电探测器(QDIP)具有民用和军事应用的巨大潜力,这归因于其尺寸所具有的独特特性-它提供3D载流子限制和正入射检测的能力-以及它们对带隙工程的适应性-允许定制根据定制需求确定峰值和截止波长。 QDIP,尤其是经过优化以在更高的温度下运行时,可以成为太空探索,国防和安全,光通信,量子计算和密码学以及医学成像应用中的关键组件。通过响应社会对安全电子交易,指数级更快的数据处理和更高质量的诊断工具的需求,针对这些领域的可靠可靠的解决方案将在市场上占据领先地位。

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