The concept of a grating in real and frequency space is examined in the context of a three-pulse optical excitation cycle applied to a pseudo two-level model system. The calculations are done analytically using the Liouville-operator formalism in matrix form. It is shown that a continuous transition occurs from a grating in real space to a grating in frequency space when the first two excitation pulses separate in time. During this transition, the role of the population-relaxation time constant (T1) is taken over by the dephasing time constant (T2) bringing out the irreversible nature of the loss of coherence in an excited state. The underlying space-time transformation when moving from a grating in real space to a grating in frequency spac...
Coherence and de-coherence are the most fundamental steps that follow the initial photo-excitation o...
Coherence and de-coherence are the most fundamental steps that follow the initial photo-excitation o...
This article seeks to provide a fundamental understanding of time-resolved four-wave mixing (FWM) pr...
The concept of a grating in real and frequency space is examined in the context of a three-pulse opt...
The concept of a grating in real and frequency space is examined in the context of a three-pulse opt...
The concept of a grating in real and frequency space is examined in the context of a three-pulse opt...
The concept of a grating in real and frequency space is examined in the context of a three-pulse opt...
The concept of a grating in real and frequency space is examined in the context of a three-pulse opt...
Interfering light waves produce an optical interference pattern in any medium that interacts with li...
Interfering light waves produce an optical interference pattern in any medium that interacts with li...
Interfering light waves produce an optical interference pattern in any medium that interacts with li...
Interfering light waves produce an optical interference pattern in any medium that interacts with li...
Interfering light waves produce an optical interference pattern in any medium that interacts with li...
Mathematical descriptions of an excited state multilevel system are developed to include progressive...
Coherence and de-coherence are the most fundamental steps that follow the initial photo-excitation o...
Coherence and de-coherence are the most fundamental steps that follow the initial photo-excitation o...
Coherence and de-coherence are the most fundamental steps that follow the initial photo-excitation o...
This article seeks to provide a fundamental understanding of time-resolved four-wave mixing (FWM) pr...
The concept of a grating in real and frequency space is examined in the context of a three-pulse opt...
The concept of a grating in real and frequency space is examined in the context of a three-pulse opt...
The concept of a grating in real and frequency space is examined in the context of a three-pulse opt...
The concept of a grating in real and frequency space is examined in the context of a three-pulse opt...
The concept of a grating in real and frequency space is examined in the context of a three-pulse opt...
Interfering light waves produce an optical interference pattern in any medium that interacts with li...
Interfering light waves produce an optical interference pattern in any medium that interacts with li...
Interfering light waves produce an optical interference pattern in any medium that interacts with li...
Interfering light waves produce an optical interference pattern in any medium that interacts with li...
Interfering light waves produce an optical interference pattern in any medium that interacts with li...
Mathematical descriptions of an excited state multilevel system are developed to include progressive...
Coherence and de-coherence are the most fundamental steps that follow the initial photo-excitation o...
Coherence and de-coherence are the most fundamental steps that follow the initial photo-excitation o...
Coherence and de-coherence are the most fundamental steps that follow the initial photo-excitation o...
This article seeks to provide a fundamental understanding of time-resolved four-wave mixing (FWM) pr...