Synthetic lattices in photonics enable the exploration of light states in new dimensions, transcending phenomena common only to physical space. We propose and demonstrate a Quantum Walk Laser in synthetic frequency space formed by externally modulating a ring-shaped semiconductor laser with ultrafast recovery times. In this device, the initially ballistic quantum walk does not dissipate into low supermode states of the synthetic lattice; instead, thanks to the fast-gain nonlinearity of our quantum cascade laser active material, the state stabilizes in a broad frequency comb, unlocking the full potential of the lattice. This device produces a low-noise, nearly-flat broadband comb (reaching 100 cm$^{-1}$ bandwidth), well predicted by our mode...
Reaching a given target quantum state with high fidelity and fast operation speed close to the quant...
Since the demonstration that multimode Quantum Cascade Lasers (QCLs) can operate as sources of Optic...
Quantum walks are powerful kernels in quantum computing protocols, and possess strong capabilities i...
Synthetic lattices in photonics enable the exploration of light states in new dimensions, transcendi...
Single-section quantum dash semiconductor lasers have attracted much attention as an integrated and ...
An efficient simulator for quantum systems is one of the original goals for the efforts to develop a...
A laser model is formulated in terms of quantum harmonic oscillators. Emitters in the low lasing sta...
Abstract: The linewidth of a mode-locked laser’s frequency comb induced by spontaneous emis-sion, or...
Mid-infrared Quantum Cascade Lasers (QCLs) are compact and efficient sources ideal for molecular spe...
We demonstrate THz optical frequency comb (FC) operation based on ultra-broadband, record dynamic ra...
Quantum walks provide a framework for understanding and designing quantum algorithms that is both in...
In a Quantum Walk (QW) the “walker” follows all possible paths at once through the principle of quan...
Quantum cascade lasers (QCLs) are bright, coherent sources, which operate at mid-infrared and terahe...
Ideal ring resonators are characterized by travelling-wave counterpropagating modes, but in practice...
The speed of light $c$ sets a strict upper bound on the speed of information transfer in both classi...
Reaching a given target quantum state with high fidelity and fast operation speed close to the quant...
Since the demonstration that multimode Quantum Cascade Lasers (QCLs) can operate as sources of Optic...
Quantum walks are powerful kernels in quantum computing protocols, and possess strong capabilities i...
Synthetic lattices in photonics enable the exploration of light states in new dimensions, transcendi...
Single-section quantum dash semiconductor lasers have attracted much attention as an integrated and ...
An efficient simulator for quantum systems is one of the original goals for the efforts to develop a...
A laser model is formulated in terms of quantum harmonic oscillators. Emitters in the low lasing sta...
Abstract: The linewidth of a mode-locked laser’s frequency comb induced by spontaneous emis-sion, or...
Mid-infrared Quantum Cascade Lasers (QCLs) are compact and efficient sources ideal for molecular spe...
We demonstrate THz optical frequency comb (FC) operation based on ultra-broadband, record dynamic ra...
Quantum walks provide a framework for understanding and designing quantum algorithms that is both in...
In a Quantum Walk (QW) the “walker” follows all possible paths at once through the principle of quan...
Quantum cascade lasers (QCLs) are bright, coherent sources, which operate at mid-infrared and terahe...
Ideal ring resonators are characterized by travelling-wave counterpropagating modes, but in practice...
The speed of light $c$ sets a strict upper bound on the speed of information transfer in both classi...
Reaching a given target quantum state with high fidelity and fast operation speed close to the quant...
Since the demonstration that multimode Quantum Cascade Lasers (QCLs) can operate as sources of Optic...
Quantum walks are powerful kernels in quantum computing protocols, and possess strong capabilities i...