We present a high efficiency source of picosecond pulses derived from a dual cavity optical frequency comb generator. This approach overcomes the limitations of single cavity comb generators that are restricted to efficiencies of a few percent. We achieve picosecond pulses with GHz repetition rates offering over a hundred times higher output efficiency than a single cavity design and demonstrate tuning of pulse width by varying the modulation depth of the intra-cavity electro-optic modulator. These results provide a wavelength-agnostic design with a compact footprint for the development of portable picosecond pulsed laser systems for timing, metrology, and LIDAR applications
Optical frequency combs are garnering much attention in photonic applications related to optical com...
Optical frequency combs generators (OFCGs) have demonstrated to be extremely useful tools in a wide ...
Chip-scale frequency comb sources are key elements for a variety of applications, comprising massive...
We present a high efficiency source of picosecond pulses derived from a dual cavity optical frequenc...
We present a high efficiency source of picosecond pulses derived from a dual cavity optical frequenc...
Developments in integrated photonics have led to stable, compact, and broadband comb generators that...
The on-chip generation of large and complex optical quantum states will enable low-cost and accessib...
Optical frequency combs (OFCs) can generate a wide bandwidth of regularly spaced modes with high fre...
<p> The on-chip generation of large and complex optical quantum states will enable low-cost and acc...
The on-chip generation of large and complex optical quantum states will enable low-cost and accessib...
Optical quantum technologies such as quantum sensing, quantum cryptography and quantum computation a...
The on-chip generation of large and complex optical quantum states will enable low-cost and accessib...
The on-chip generation of large and complex optical quantum states will enable low-cost and accessib...
Optical frequency combs are garnering much attention in photonic applications related to optical com...
Optical frequency combs are garnering much attention in photonic applications related to optical com...
Optical frequency combs are garnering much attention in photonic applications related to optical com...
Optical frequency combs generators (OFCGs) have demonstrated to be extremely useful tools in a wide ...
Chip-scale frequency comb sources are key elements for a variety of applications, comprising massive...
We present a high efficiency source of picosecond pulses derived from a dual cavity optical frequenc...
We present a high efficiency source of picosecond pulses derived from a dual cavity optical frequenc...
Developments in integrated photonics have led to stable, compact, and broadband comb generators that...
The on-chip generation of large and complex optical quantum states will enable low-cost and accessib...
Optical frequency combs (OFCs) can generate a wide bandwidth of regularly spaced modes with high fre...
<p> The on-chip generation of large and complex optical quantum states will enable low-cost and acc...
The on-chip generation of large and complex optical quantum states will enable low-cost and accessib...
Optical quantum technologies such as quantum sensing, quantum cryptography and quantum computation a...
The on-chip generation of large and complex optical quantum states will enable low-cost and accessib...
The on-chip generation of large and complex optical quantum states will enable low-cost and accessib...
Optical frequency combs are garnering much attention in photonic applications related to optical com...
Optical frequency combs are garnering much attention in photonic applications related to optical com...
Optical frequency combs are garnering much attention in photonic applications related to optical com...
Optical frequency combs generators (OFCGs) have demonstrated to be extremely useful tools in a wide ...
Chip-scale frequency comb sources are key elements for a variety of applications, comprising massive...