Return
Sub-Shot-Noise Laser Phase Stabilization via Cavity-Coupled Mach–Zehnder Interferometer
N
R
B
J
S
L
王
Y
DOI:10.1002/lpor.71684.png)
Abstract
En 中文
Laser phase noise fundamentally limits precision across modern optics applications. Existing stabilization protocols suffer a fundamental trade-off: they are constrained by either shot noise or technical noise, and none simultaneously eliminate amplitude noise while preserving quantum enhancement. We overcome this limitation by injecting squeezed vacuum into a cavity-coupled Mach–Zehnder interferometer, thereby realizing sub-shot-noise phase stabilization with intrinsic immunity to amplitude noise—enabled by the high common-mode rejection ratio of balanced detection. With –11 dB squeezing, we achieve 6.2 dB quantum-enhanced suppression at 30 kHz over 5–200 kHz. This architecture provides a practical path to quantum-compatible feedback for next-generation ultra-stable lasers.
Keywords:
cavity-coupled Mach–Zehnder interferometer
laser phase stabilization
sub-shot-noise
Journal
L
IF:
10
Papers:
1.1K
Citations:
1
