Recent progress in hybrid diamond photonics for quantum information processing and sensing.

Ryota Katsumi, Kosuke Takada, Fedor Jelezko, Takashi Yatsui
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Abstract

Point defects in diamond, particularly nitrogen-vacancy (NV) centers, have emerged as powerful tools for a broad range of quantum technologies. These defects are promising candidates for quantum information science, serving as deterministic single-photon sources and solid-state quantum memories. They have also been employed as nanoscale quantum sensors to detect various physical quantities, including magnetic fields, electric fields, and temperature, owing to their long spin coherence time at room temperature. Development of these diamond-based quantum technologies has been rapidly boosted by a recent quantum leap in nanofabrication technologies for high-quality single-crystal diamond. Incorporating these color centers into diamond nanostructures with mature integrated photonics provides a promising route to build scalable and practical systems for quantum applications. This review discusses recent progress and challenges in the hybrid integration of diamond color centers on cutting-edge photonic platforms.

用于量子信息处理和传感的混合金刚石光子学研究进展。
金刚石中的点缺陷,特别是氮空位(NV)中心,已经成为广泛的量子技术的有力工具。这些缺陷是量子信息科学中有前途的候选者,可以作为确定性的单光子源和固态量子存储器。由于它们在室温下的自旋相干时间长,它们也被用作纳米级量子传感器来检测各种物理量,包括磁场、电场和温度。最近,高质量单晶金刚石的纳米制造技术取得了巨大飞跃,这迅速推动了这些基于金刚石的量子技术的发展。将这些色心结合到具有成熟集成光子学的金刚石纳米结构中,为构建可扩展和实用的量子应用系统提供了一条有前途的途径。本文综述了金刚石色中心在尖端光子平台上混合集成的最新进展和面临的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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