DOAJ Open Access 2026

1-MHz linewidth VCSEL enabled by monolithically integrated passive cavity for high-stability chip-scale atomic clocks

Zhiting Tang Chuanlin Li Xuhao Zhang Wuyang Ren Kai Shen +8 lainnya

Abstrak

Abstract Narrow-linewidth vertical-cavity surface-emitting lasers (VCSELs) are key enablers for chip-scale atomic clocks and quantum sensors, yet conventional designs suffer from short cavity lengths and excess spontaneous emission, resulting in broad linewidths and degraded frequency stability. Here, we demonstrate a monolithically integrated VCSEL operating at the cesium D1 line (894.6 nm) that achieves intrinsic linewidth compression to ~1 MHz, without requiring external optical feedback. This performance is enabled by embedding a passive cavity adjacent to the active region, which spatially redistributes the optical field into a low-loss region, extending photon lifetime while suppressing higher-order transverse and longitudinal modes. The resulting device exhibits robust single-mode operation over a wide current and temperature range, with side-mode suppression ratio (SMSR) > 35 dB, orthogonal polarization suppression ratio (OPSR) > 25 dB and a beam divergence of ~7°. Integrated into a Cesium vapor-cell atomic clock, the VCSEL supports a frequency stability of 1.89 × 10–12 τ-1/2. These results position this VCSEL architecture as a compact, scalable solution for next-generation quantum-enabled frequency references and sensing platforms.

Penulis (13)

Z

Zhiting Tang

C

Chuanlin Li

X

Xuhao Zhang

W

Wuyang Ren

K

Kai Shen

C

Chuang Li

Q

Qingsong Bai

J

Jin Li

A

Aobo Ren

H

Hao Wang

X

Xiaorong Luo

H

Hongxing Xu

J

Jiang Wu

Format Sitasi

Tang, Z., Li, C., Zhang, X., Ren, W., Shen, K., Li, C. et al. (2026). 1-MHz linewidth VCSEL enabled by monolithically integrated passive cavity for high-stability chip-scale atomic clocks. https://doi.org/10.1038/s41377-026-02192-x

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Informasi Jurnal
Tahun Terbit
2026
Sumber Database
DOAJ
DOI
10.1038/s41377-026-02192-x
Akses
Open Access ✓