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嵌入纳米光子波导中的布拉格光栅腔用于珀塞尔增强量子点发射。

Bragg grating cavities embedded into nano-photonic waveguides for Purcell enhanced quantum dot emission.

作者信息

Hepp Stefan, Bauer Stephanie, Hornung Florian, Schwartz Mario, Portalupi Simone L, Jetter Michael, Michler Peter

出版信息

Opt Express. 2018 Nov 12;26(23):30614-30622. doi: 10.1364/OE.26.030614.

Abstract

In the present work, we demonstrate the fabrication and optical properties of Bragg grating cavities that are directly integrated into ridge waveguides along with the Purcell enhanced emission from integrated quantum dots. Measured Q-factors up to 4600 are observed in combination with resonances of the fundamental mode within a ± 0.11 nm range along the full fabricated chip. The measured Purcell enhancement up to a factor of 3.5 ± 0.5 shows the potential utility for state-of-the-art on-chip quantum optical experiments as realized in off-chip implementations. Our measurements are fully supported via FDTD simulations giving a theoretical Purcell enhancement up to a factor of 20 with a highly directional βdir-factor of 70 %. The straightforward upscaling and robust design of the investigated Bragg grating cavity in combination with a substantial Purcell enhancement represents a major step towards large scale on-chip quantum photonic circuits.

摘要

在本工作中,我们展示了直接集成到脊形波导中的布拉格光栅腔的制造及其光学特性,以及集成量子点的珀塞尔增强发射。沿着整个制造芯片,在±0.11 nm范围内观察到与基模共振相结合的高达4600的测量品质因数。测量得到的高达3.5±0.5倍的珀塞尔增强表明了其在片上量子光学实验中的潜在效用,就像在片外实现中那样。我们的测量结果通过有限时域差分(FDTD)模拟得到了充分支持,模拟给出了高达20倍的理论珀塞尔增强以及70%的高定向βdir因子。所研究的布拉格光栅腔的直接放大和稳健设计,再加上显著的珀塞尔增强,代表了朝着大规模片上量子光子电路迈出的重要一步。

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