论文标题

高温超材料Terahertz量子检测器

High temperature metamaterial terahertz quantum detector

论文作者

Jeannin, Mathieu, Bonazzi, Thomas, Gacemi, Djamal, Vasanelli, Angela, Suffit, Stéphan, Li, Lianhe, Davies, Alexander Giles, Linfield, Edmund, Sirtori, Carlo, Todorov, Yanko

论文摘要

我们证明了基于三维超材料的Terahertz(THZ)辐射的高温性能量子检测器。超材料单位细胞由电感能力(LC)谐振器与天线元件横向结合。由半导体量子孔组成的吸收区域包含在LC结构的强大超掩埋力电容器中。天线的高辐射损失允许入射THZ辐射的收集效率大大提高,而LC谐振器的较小有效体积允许强烈的轻度耦合与降低的电面积。结果,我们的探测器的工作温度要高于到目前为止所证明的常规量子井检测器。

We demonstrate a high temperature performance quantum detector of Terahertz (THz) radiation based on three-dimensional metamaterial. The metamaterial unit cell consists of an inductor-capacitor (LC) resonator laterally coupled with antenna elements. The absorbing region, consisting of semiconductor quantum wells is contained in the strongly ultra-subwavelength capacitors of the LC structure. The high radiation loss of the antenna allows strongly increased collection efficiency for the incident THz radiation, while the small effective volume of the LC resonator allows intense light-matter coupling with reduced electrical area. As a result, our detectors operates at much higher temperatures than conventional quantum well detectors demonstrated so far.

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