论文标题
长基线光纤干涉法的限制和前景
Limits and prospects for long-baseline optical fiber interferometry
论文作者
论文摘要
当今最精确的光学仪器 - 重力波干涉仪和光原子时钟 - 依靠较长的存储时间来实现其精致的灵敏度。光纤技术是实现长距离光传播的最广泛部署的平台。然而,它们在精确的光学测量中的应用很少。我们从精确的光学测量和量子技术的角度审查了传统(固体)光纤噪声性能的最新表现,这些量子依赖于长距离信息的精确传输。在此过程中,我们强调了该平台的局限性,并指出了结构化纤维技术可以克服其中一些限制的机会。
Today's most precise optical instruments -- gravitational-wave interferometers and optical atomic clocks -- rely on long storage times for photons to realize their exquisite sensitivity. Optical fiber technology is the most widely deployed platform for realizing long-distance optical propagation. Yet, their application to precision optical measurements is sparse. We review the state-of-the-art in the noise performance of conventional (solid-core) optical fibers from the perspective of precision optical measurements and quantum technology that rely on precise transfer of information over long distances. In doing so, we highlight the limitations of this platform and point to the opportunities that structured fiber technology offers to overcome some of these limitations.