In this series of papers we report on the generation and application of multiple pulse phase coherent sequences in optical spectroscopy. In this paper the effects of intense pulse trains on systems with only two resonant energy levels are analyzed, with particular attention to the effects of extreme inhomogeneous broadening and population depletion to nonresonant levels. It is shown that these effects, which are present in virtually all optical systems, make the simple gyroscopic model of optical coherent transients invalid. Exact calculations show, e.g., that a two‐pulse photon echo is not maximized by a 1:2 length ratio for the pulses; that the maximum excited state population is not created by a 180° pulse; and that three equal pulses ar...
The physical principles of multipulse control of coherent and relaxation processes in solid-state ph...
The nonlinear optical response of a material system contains detailed information about its electron...
Creation, erasing and ultrafast control of population density gratings using few-cycle optical pulse...
In this paper we describe a new technique for the generation of multiple pulse phase coherent sequen...
In this paper we describe a new technique for the generation of multiple pulse phase coherent sequen...
The effects of intense laser pulse trains in coupled multilevel systems (such as pure or mixed molec...
The effects of intense laser pulse trains in coupled multilevel systems (such as pure or mixed molec...
In this paper we present novel and simple pulse sequences for enhancing the intensity of forbidden o...
In this paper we present novel and simple pulse sequences for enhancing the intensity of forbidden o...
Controlling laser-molecule interactions has become an integral part of developing devices and applic...
An isolated and spectrally narrow absorptive feature is prepared via a novel spectral hole burning p...
We generated a coherently synthesized optical pulse from two independent mode-locked femtosecond las...
The physical principles of multipulse control of coherent and relaxation processes in solid-state ph...
Mathematical descriptions of an excited state multilevel system are developed to include progressive...
The physical principles of multipulse control of coherent and relaxation processes in solid-state ph...
The physical principles of multipulse control of coherent and relaxation processes in solid-state ph...
The nonlinear optical response of a material system contains detailed information about its electron...
Creation, erasing and ultrafast control of population density gratings using few-cycle optical pulse...
In this paper we describe a new technique for the generation of multiple pulse phase coherent sequen...
In this paper we describe a new technique for the generation of multiple pulse phase coherent sequen...
The effects of intense laser pulse trains in coupled multilevel systems (such as pure or mixed molec...
The effects of intense laser pulse trains in coupled multilevel systems (such as pure or mixed molec...
In this paper we present novel and simple pulse sequences for enhancing the intensity of forbidden o...
In this paper we present novel and simple pulse sequences for enhancing the intensity of forbidden o...
Controlling laser-molecule interactions has become an integral part of developing devices and applic...
An isolated and spectrally narrow absorptive feature is prepared via a novel spectral hole burning p...
We generated a coherently synthesized optical pulse from two independent mode-locked femtosecond las...
The physical principles of multipulse control of coherent and relaxation processes in solid-state ph...
Mathematical descriptions of an excited state multilevel system are developed to include progressive...
The physical principles of multipulse control of coherent and relaxation processes in solid-state ph...
The physical principles of multipulse control of coherent and relaxation processes in solid-state ph...
The nonlinear optical response of a material system contains detailed information about its electron...
Creation, erasing and ultrafast control of population density gratings using few-cycle optical pulse...