Based on theoretical predictions on the appearance of antibunching before the laser threshold at the nano- and microscale, we analyze the amount of photon-number squeezing naturally produced in the laser emission. Up to 3 dB photon number noise reduction is obtained in comparison with the coherent emission, with output power in the range of pW and with negligible effects due to pump fluctuations. The scheme requires a moderately high Q cavity and holds promise for the construction of a simple and effective photon-number squeezed source
We introduce the concept of a squeezed laser, in which a squeezed cavity mode develops a macroscopic...
A squeezed light source, i.e. a source with ultra low noise level, below the standard quantum limit ...
We consider a laser model consisting of a single four-level or three-level atom, an optical cavity, ...
Based on theoretical predictions on the appearance of antibunching before the laser threshold at the...
Intensity squeezed light was successfully generated using semiconductor lasers with sub-Poissonian p...
Solid state laser sources, such as diode-pumped Nd:YAG lasers, have given us CW laser light of high ...
We investigate the quantum noise properties of lasers in which both the laser and pump form resonant...
Squeezed light is optical beams with variance below the shot noise level. They are a key resource fo...
Squeezing of light's quantum noise requires temporal rearranging of photons. This again corresponds ...
Squeezing of light's quantum noise requires temporal rearranging of photons. This again corresponds ...
The level of quantum noise in measurements is bounded from below by the Heisenberg uncertainty princ...
Delicate engineering of integrated nonlinear structures is required for developing scalable sources ...
In this dissertation measurements are presented that extend our understanding of the important noise...
We calculate the amplitude squeezing in the output of a coherently pumped four-level laser and compa...
Delicate engineering of integrated nonlinear structures is required for developing scalable sources ...
We introduce the concept of a squeezed laser, in which a squeezed cavity mode develops a macroscopic...
A squeezed light source, i.e. a source with ultra low noise level, below the standard quantum limit ...
We consider a laser model consisting of a single four-level or three-level atom, an optical cavity, ...
Based on theoretical predictions on the appearance of antibunching before the laser threshold at the...
Intensity squeezed light was successfully generated using semiconductor lasers with sub-Poissonian p...
Solid state laser sources, such as diode-pumped Nd:YAG lasers, have given us CW laser light of high ...
We investigate the quantum noise properties of lasers in which both the laser and pump form resonant...
Squeezed light is optical beams with variance below the shot noise level. They are a key resource fo...
Squeezing of light's quantum noise requires temporal rearranging of photons. This again corresponds ...
Squeezing of light's quantum noise requires temporal rearranging of photons. This again corresponds ...
The level of quantum noise in measurements is bounded from below by the Heisenberg uncertainty princ...
Delicate engineering of integrated nonlinear structures is required for developing scalable sources ...
In this dissertation measurements are presented that extend our understanding of the important noise...
We calculate the amplitude squeezing in the output of a coherently pumped four-level laser and compa...
Delicate engineering of integrated nonlinear structures is required for developing scalable sources ...
We introduce the concept of a squeezed laser, in which a squeezed cavity mode develops a macroscopic...
A squeezed light source, i.e. a source with ultra low noise level, below the standard quantum limit ...
We consider a laser model consisting of a single four-level or three-level atom, an optical cavity, ...