Fröch Johannes E, Li Chi, Chen Yongliang, Toth Milos, Kianinia Mehran, Kim Sejeong, Aharonovich Igor
School of Mathematical and Physical Sciences, University of Technology Sydney, Ultimo, New South Wales, 2007, Australia.
ARC Centre of Excellence for Transformative Meta-Optical Systems (TMOS), University of Technology Sydney, Ultimo, New South Wales, 2007, Australia.
Small. 2022 Jan;18(2):e2104805. doi: 10.1002/smll.202104805. Epub 2021 Nov 27.
Integration of solid-state quantum emitters into nanophotonic circuits is a critical step towards fully on-chip quantum photonic-based technologies. Among potential materials platforms, quantum emitters in hexagonal boron nitride (hBN) have emerged as a viable candidate over the last years. While the fundamental physical properties have been intensively studied, only a few works have focused on the emitter integration into photonic resonators. Yet, for a potential quantum photonic material platform, the integration with nanophotonic cavities is an important cornerstone, as it enables the deliberate tuning of the spontaneous emission and the improved readout of distinct transitions for a quantum emitter. In this work, the resonant tuning of a monolithic cavity integrated hBN quantum emitter is demonstrated through gas condensation at cryogenic temperature. In resonance, an emission enhancement and lifetime reduction are observed, with an estimate for the Purcell factor of ≈15.
将固态量子发射器集成到纳米光子电路中是迈向完全基于片上量子光子技术的关键一步。在潜在的材料平台中,六方氮化硼(hBN)中的量子发射器在过去几年中已成为一个可行的候选者。虽然其基本物理性质已得到深入研究,但只有少数工作专注于将发射器集成到光子谐振器中。然而,对于一个潜在的量子光子材料平台而言,与纳米光子腔的集成是一个重要的基石,因为它能够有意地调节自发发射,并改善量子发射器不同跃迁的读出。在这项工作中,通过低温下的气体冷凝展示了单片腔集成hBN量子发射器的共振调谐。在共振时,观察到发射增强和寿命缩短,珀塞尔因子估计约为15。