A novel all-electrical method of frequency noise reduction in quantum cascade lasers (QCLs) is proposed. Electrical current through the laser was continuously adjusted to compensate for fluctuations of the laser internal resistance, which led to an active stabilization of the optical emission frequency. A reduction of the linewidth from 1.7 MHz in the standard constant current mode of operation down to 480 kHz is demonstrated at 10-ms observation time when applying this method to a QCL emitting at 7.9 μm
We describe the technique allowing for generation of low-noise wider frequency combs and pulses of s...
We characterized the dual wavelength operation of a distributed Bragg reflector (DBR) quantum cascad...
We report on the phase locking of a 3.4 THz third-order distributed feedback quantum cascade laser (...
We report on the broadening of the optical bandwidth of a distributed feedback quantum cascade laser...
We report on the measurement of the frequency noise properties of a 4.6-μm distributed-feedback quan...
A novel design of high peak power mid-infrared quantum cascade lasers has been modeled, implemented ...
We present pure amplitude modulation (AM) and frequency modulation (FM) achieved electrically in a q...
Researchers demonstrated direct evidence of an intrinsic linewidth of a few hundred hertz for these ...
We present a detailed experimental investigation of the use of a novel actuator for frequency tuning...
We present an experimental study of noise in mid-infrared quantum cascade lasers (QCLs) of differ-en...
We report on the evaluation of the frequency stability of a distributed feedback quantum cascade las...
We report frequency locking of two 3.5-THz third-order distributed feedback (DFB) quantum cascade la...
We present a mid-infrared quantum cascade laser (QCL) with a sub-10 kHz full width at half-maximum l...
In 1995, or over the past few years, Quantum Cascade Laser (QCL) was introduced to the world. It i...
We demonstrate a technique to simultaneously stabilize the frequency and output power of a terahertz...
We describe the technique allowing for generation of low-noise wider frequency combs and pulses of s...
We characterized the dual wavelength operation of a distributed Bragg reflector (DBR) quantum cascad...
We report on the phase locking of a 3.4 THz third-order distributed feedback quantum cascade laser (...
We report on the broadening of the optical bandwidth of a distributed feedback quantum cascade laser...
We report on the measurement of the frequency noise properties of a 4.6-μm distributed-feedback quan...
A novel design of high peak power mid-infrared quantum cascade lasers has been modeled, implemented ...
We present pure amplitude modulation (AM) and frequency modulation (FM) achieved electrically in a q...
Researchers demonstrated direct evidence of an intrinsic linewidth of a few hundred hertz for these ...
We present a detailed experimental investigation of the use of a novel actuator for frequency tuning...
We present an experimental study of noise in mid-infrared quantum cascade lasers (QCLs) of differ-en...
We report on the evaluation of the frequency stability of a distributed feedback quantum cascade las...
We report frequency locking of two 3.5-THz third-order distributed feedback (DFB) quantum cascade la...
We present a mid-infrared quantum cascade laser (QCL) with a sub-10 kHz full width at half-maximum l...
In 1995, or over the past few years, Quantum Cascade Laser (QCL) was introduced to the world. It i...
We demonstrate a technique to simultaneously stabilize the frequency and output power of a terahertz...
We describe the technique allowing for generation of low-noise wider frequency combs and pulses of s...
We characterized the dual wavelength operation of a distributed Bragg reflector (DBR) quantum cascad...
We report on the phase locking of a 3.4 THz third-order distributed feedback quantum cascade laser (...