We theoretically and experimentally study absorption of picosecond laser pulses in materials described by a four-level system that exhibit reverse saturable absorption (RSA). Using an approximate solution to the rate equations, we derive, analyze, and verify, numerically and experimentally, a single dynamical equation for the spatial evolution of the pulse fluence that includes both the rate equations and the propagation equation. This analytical approach considerably simplifies the study of optical limiting with picosecond pulses and helps to predict the behavior of the nonlinear transmittance, the level of output signal clamping, and a possible turnover from RSA to saturable absorption that restricts the performance of optical limiters ba...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
We theoretically and experimentally study absorption of picosecond laser pulses in materials describ...
We develop an analytical approach to the dynamics of band populations of reverse saturable absorbers...
We develop an analytical approach to the dynamics of band populations of reverse saturable absorbers...
A variety of applications exist for reverse saturable absorbers (RSAs) in the area of optical pulse ...
A variety of applications exist for reverse saturable absorbers (RSAs) in the area of optical pulse ...
An advanced full-wave time-domain numerical model for reverse saturable absorption (RSA) is presente...
We present our recent advances toward the development of high-performance solid-state optical limiti...
Using an analytical approach we quantitatively estimate the effects of the pulse shape and material ...
[[abstract]]We present our recent advances toward the development of high-performance solid-state op...
The theoretical study of the propagation of a bell-shaped light pulse through a saturable absorber h...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
We theoretically and experimentally study absorption of picosecond laser pulses in materials describ...
We develop an analytical approach to the dynamics of band populations of reverse saturable absorbers...
We develop an analytical approach to the dynamics of band populations of reverse saturable absorbers...
A variety of applications exist for reverse saturable absorbers (RSAs) in the area of optical pulse ...
A variety of applications exist for reverse saturable absorbers (RSAs) in the area of optical pulse ...
An advanced full-wave time-domain numerical model for reverse saturable absorption (RSA) is presente...
We present our recent advances toward the development of high-performance solid-state optical limiti...
Using an analytical approach we quantitatively estimate the effects of the pulse shape and material ...
[[abstract]]We present our recent advances toward the development of high-performance solid-state op...
The theoretical study of the propagation of a bell-shaped light pulse through a saturable absorber h...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...
Limiting devices protect sensitive optical elements from laser-induced damage (LID). Passive devices...