Temporal cavity solitons with a detectable repetition rate are generated in a high-Q silica microresonator. A technique for long-term stabilization of the soliton train is demonstrated and used to measure soliton properties for comparison with theory
The phase noise of the soliton repetition rate is experimentally characterized in silica microresona...
Dissipative Kerr soliton mode locking in high-Q silica micro cavities is reviewed including resonato...
Frequency combs are having a broad impact on science and technology because they provide a way to co...
Temporal cavity solitons with a detectable repetition rate are generated in a high-Q silica microres...
Temporal cavity solitons with a detectable repetition rate are generated in a high-Q silica microres...
Frequency combs are having a broad impact on science and technology because they provide a way to co...
Frequency combs are having a broad impact on science and technology because they provide a way to co...
Frequency combs are having a broad impact on science and technology because they provide a way to co...
Soliton mode locking and femtosecond pulse generation have recently been demonstrated in high-Q opt...
Soliton mode locking and femtosecond pulse generation have recently been demonstrated in high-Q opt...
Because they coherently link radio/microwave-rate electrical signals with optical-rate signals deriv...
Frequency combs are having a broad impact on science and technology because they provide a way to co...
An external‐cavity diode laser for 1550‐nm wavelength is reported with ultra‐low noise, high power c...
An external‐cavity diode laser for 1550‐nm wavelength is reported with ultra‐low noise, high power c...
A spectrometer is demonstrated using self-locked counter-propagating soliton frequency combs in a hi...
The phase noise of the soliton repetition rate is experimentally characterized in silica microresona...
Dissipative Kerr soliton mode locking in high-Q silica micro cavities is reviewed including resonato...
Frequency combs are having a broad impact on science and technology because they provide a way to co...
Temporal cavity solitons with a detectable repetition rate are generated in a high-Q silica microres...
Temporal cavity solitons with a detectable repetition rate are generated in a high-Q silica microres...
Frequency combs are having a broad impact on science and technology because they provide a way to co...
Frequency combs are having a broad impact on science and technology because they provide a way to co...
Frequency combs are having a broad impact on science and technology because they provide a way to co...
Soliton mode locking and femtosecond pulse generation have recently been demonstrated in high-Q opt...
Soliton mode locking and femtosecond pulse generation have recently been demonstrated in high-Q opt...
Because they coherently link radio/microwave-rate electrical signals with optical-rate signals deriv...
Frequency combs are having a broad impact on science and technology because they provide a way to co...
An external‐cavity diode laser for 1550‐nm wavelength is reported with ultra‐low noise, high power c...
An external‐cavity diode laser for 1550‐nm wavelength is reported with ultra‐low noise, high power c...
A spectrometer is demonstrated using self-locked counter-propagating soliton frequency combs in a hi...
The phase noise of the soliton repetition rate is experimentally characterized in silica microresona...
Dissipative Kerr soliton mode locking in high-Q silica micro cavities is reviewed including resonato...
Frequency combs are having a broad impact on science and technology because they provide a way to co...