论文标题

具有量子扩增的桌面干涉仪的设计

Design of a tabletop interferometer with quantum amplification

论文作者

Smetana, Jiri, Dmitriev, Artemiy, Zhao, Chunnong, Miao, Haixing, Martynov, Denis

论文摘要

激光干涉仪的敏感性在根本上受光的量子性质的限制。最近的理论研究通过使用主动平价时间对称和相敏感的量子扩增开辟了新的途径,以增强其量子限制的灵敏度。这些系统可以增强信号响应,而无需在理想情况下引入多余的噪声。但是,这种活动系统必须是因果,稳定且经过精心调整的,以实用,并且适用于精确测量。在本文中,我们表明,可以在桌面实验中实现激光干涉仪中的相敏化扩增。该布局由两个耦合腔和一个由氮化硅和辅助泵场组成的活性培养基组成。我们的设计依赖于现有的膜和低温技术,可以证明三个不同的特征:(i)光学系统的自动化动力学,(ii)在存在放大器的情况下其灵敏度的量子增强,以及(iii)放大器增益的光学控制。需要这些特征来增强未来的干涉重力波和轴突检测器的灵敏度。

The sensitivity of laser interferometers is fundamentally limited by the quantum nature of light. Recent theoretical studies have opened a new avenue to enhance their quantum-limited sensitivity by using active parity-time-symmetric and phase-insensitive quantum amplification. These systems can enhance the signal response without introducing excess noise in the ideal case. However, such active systems must be causal, stable, and carefully tuned to be practical and applicable to precision measurements. In this paper, we show that phase-insensitive amplification in laser interferometers can be implemented in a tabletop experiment. The layout consists of two coupled cavities and an active medium comprised of a silicon nitride membrane and an auxiliary pump field. Our design relies on existing membrane and cryogenic technology and can demonstrate three distinct features: (i) the self-stabilized dynamics of the optical system, (ii) quantum enhancement of its sensitivity in the presence of the amplifier, and (iii) optical control of the amplifier gain. These features are needed to enhance the sensitivity of future interferometric gravitational-wave and axion detectors.

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