The method achieves intracavity squeezing exceeding 3dB, paving the way for advanced quantum optics applications.
Utilizing optical Kerr nonlinearity significantly improves light manipulation in micro-resonators for quantum experiments.
This innovative approach employs resonators to optimize quantum emitter interactions through squeezed light techniques.
Implications for quantum technology advancements may arise, enhancing precision measurements and quantum communication capabilities.
Abstract
We propose a method to enhance intracavity squeezing beyond 3dB with optical Kerr nonlinearity, towards driving quantum emitters with squeezed light in micro-resonators.