Observation of Electromagnetically Induced Transparency for a Squeezed Vacuum with the Time Domain Method
arXiv:0707.1971 · doi:10.1364/OE.15.011849
Abstract
A probe light in a squeezed vacuum state was injected into cold 87 $Rb atoms with an intense control light in a coherent state. A sub-MHz window was created due to electromagnetically induced transparency, and the incident squeezed vacuum could pass through the cold atoms without optical loss, as was successfully monitored using a time-domain homodyne method.
References in corpus (4)
- Experimental demonstration of quantum memory for light
- Quantum Kalman Filtering and the Heisenberg Limit in Atomic Magnetometry
- Ultraslow Propagation of Squeezed Vacuum Pulses with Electromagnetically Induced Transparency
- Frequency filtered storage of parametric fluorescence with electromagnetically induced transparency
Cited by in corpus (4)
- Quantum memory for squeezed light
- Phase-sensitive Manipulations of Squeezed Vacuum Field in an Optical Parametric Amplifier inside an Optical Cavity
- Delay of Squeezing and Entanglement using Electromagnetically Induced Transparency in a Vapour Cell
- Propagation of Squeezed Vacuum under Electromagnetically Induced Transparency