论文标题

室温下中部自由空间梁的超快速振幅调制

Ultra-fast amplitude modulation of mid-IR free-space beams at room-temperature

论文作者

Pirotta, Stefano, Tran, Ngoc-Linh, Biasiol, Giorgio, Jollivet, Arnaud, Crozat, Paul, Manceau, Jean-Michel, Bousseksou, Adel, Colombelli, Raffaele

论文摘要

依靠中红外辐射(Mid-IR,$λ\ sim $ 3-30 $μ$ m)的应用已受到科学和技术突破的刺激。 MID-IR摄像机推动了热成像领域。量子级联激光器(QCL)的发明是一个里程碑,使得可用于大量应用的紧凑型,基于半导体的MID-IR激光器。最近的所有突破进步源于变革技术的发展。除了生成和检测光外,大多数光子系统的关键功能是以超快速速率(GHz或更多)以光束的振幅和/或相位的电控制。但是,目前IR光子学集成电路和系统开发人员的工具箱中缺少独立的宽带,集成调节器。我们已经开发了一个用于中IR辐射的自由空间振幅调制器($λ\ sim \ sim $ 10 $μ$ m),最多可以操作至少1.5 GHz(以$ \ sim $ 750 MHz为$ \ sim $ 750 MHz)和室温。该设备依赖于明智设计的金属光学谐振器中封闭的半导体异质结构。在零偏见下,它以高达300K的强光耦合方式运行。通过应用适当的偏置,设备将过渡到弱耦合方案。由于极化状态消失而引起的反射率的巨大变化被利用以调节中IR连续波激光的强度,直至超过1.5 GHz的速度。

Applications relying on mid-infrared radiation (Mid-IR, $λ\sim$ 3-30 $μ$m) have progressed at a very rapid pace in recent years, stimulated by scientific and technological breakthroughs. Mid-IR cameras have propelled the field of thermal imaging. And the invention of the quantum cascade laser (QCL) has been a milestone, making compact, semiconductor-based mid-IR lasers available to a vast range of applications. All the recent breakthrough advances stemmed from the development of a transformative technology. In addition to the generation and detection of light, a key functionality for most photonics systems is the electrical control of the amplitude and/or phase of an optical beam at ultra-fast rates (GHz or more). However, standalone, broadband, integrated modulators are missing from the toolbox of present mid-IR photonics integrated circuits and systems developers. We have developed a free-space amplitude modulator for mid-IR radiation ($λ\sim$ 10 $μ$m) that can operate up to at least 1.5 GHz (-3dB cut-off at $\sim$ 750 MHz) and at room-temperature. The device relies on a semiconductor hetero-structure enclosed in a judiciously designed metal-metal optical resonator. At zero bias, it operates in the strong light-matter coupling regime up to 300K. By applying an appropriate bias, the device transitions to the weak coupling regime. The large change in reflectivity due to the disappearance of the polaritonic states is exploited to modulate the intensity of a mid-IR continuous-wave laser up to speeds of more than 1.5 GHz.

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