We have studied the phase locking and spectral linewidth of an ? 2.7?THz quantum cascade laser by mixing its two lateral lasing modes. The beat signal at about 8?GHz is compared with a microwave reference by applying conventional phase lock loop circuitry with feedback to the laser bias current. Phase locking has been demonstrated, resulting in a narrow beat linewidth of less than 10?Hz. Under frequency stabilization we find that the terahertz line profile is essentially Lorentzian with a minimum linewidth of ? 6.3?kHz. Power dependent measurements suggest that this linewidth does not approach the Schawlow-Townes limit.Kavli Institute of NanoscienceApplied Science
We demonstrate phase-locking of a 2.7-THz metalmetal waveguide quantum cascade laser (QCL) to an ext...
We report on the phase locking of a 3.4 THz third-order distributed feedback quantum cascade laser (...
We have used an optical self-mixing technique to measure the linewidth enhancement factor of a terah...
We have studied the phase locking and spectral linewidth of an ˜2.7THz quantum cascade laser by mixi...
We report frequency locking of two 3.5-THz third-order distributed feedback (DFB) quantum cascade la...
We have locked the frequency of a 3 THz quantum cascade laser (QCL) to that of a far-infrared gas la...
We successfully realized phase-locking of a 2.7-THz metal-metal waveguide quantum cascade laser (QCL...
We demonstrate the phase locking of a 2.7 THz metal-metal waveguide quantum cascade laser (QCL) to a...
The electrically-pumped terahertz quantum cascade laser (QCL) is characterized by high power emissio...
High frequency accuracy and stability are important requirements for local oscillators in terahertz ...
This archive contains the dataset associated with the publication entitled Injection locking of a te...
We demonstrate phase-locking of a 2.7-THz metalmetal waveguide quantum cascade laser (QCL) to an ext...
We report on the phase locking of a 3.4 THz third-order distributed feedback quantum cascade laser (...
We have used an optical self-mixing technique to measure the linewidth enhancement factor of a terah...
We have studied the phase locking and spectral linewidth of an ˜2.7THz quantum cascade laser by mixi...
We report frequency locking of two 3.5-THz third-order distributed feedback (DFB) quantum cascade la...
We have locked the frequency of a 3 THz quantum cascade laser (QCL) to that of a far-infrared gas la...
We successfully realized phase-locking of a 2.7-THz metal-metal waveguide quantum cascade laser (QCL...
We demonstrate the phase locking of a 2.7 THz metal-metal waveguide quantum cascade laser (QCL) to a...
The electrically-pumped terahertz quantum cascade laser (QCL) is characterized by high power emissio...
High frequency accuracy and stability are important requirements for local oscillators in terahertz ...
This archive contains the dataset associated with the publication entitled Injection locking of a te...
We demonstrate phase-locking of a 2.7-THz metalmetal waveguide quantum cascade laser (QCL) to an ext...
We report on the phase locking of a 3.4 THz third-order distributed feedback quantum cascade laser (...
We have used an optical self-mixing technique to measure the linewidth enhancement factor of a terah...