The numerical solution of the time-dependent Schrödinger equation for vibrating hydrogen molecules in few-cycle laser pulses shows that high-harmonic generation is sensitive to the laser-induced vibrational motion. More intense harmonics are generated in heavier isotopes, the difference increasing with the harmonic frequency. Analytical theory reveals a dependence of the harmonics on the vibrational autocorrelation function. With the help of a genetic algorithm, the nuclear motion can be reconstructed from the harmonic spectra with sub-fs time resolution
We demonstrate a technique that uses high-order harmonic generation in molecules to probe nuclear dy...
We demonstrate a technique that uses high-order harmonic generation in molecules to probe nuclear dy...
In this paper, we theoretically investigate the nuclear signatures effects, i.e., the initial vibrat...
The numerical solution of the time-dependent Schrödinger equation for vibrating hydrogen molecules i...
The numerical solution of the time-dependent Schrödinger equation for vibrating hydrogen molecules i...
The numerical solution of the time-dependent Schro \u308dinger equation for vibrating hydrogen molec...
The numerical solution of the time-dependent Schro ̈dinger equation for vibrating hydrogen molecular...
The generation of high-order harmonics in small diatomic molecules is theoretically investigated wit...
The generation of high-order harmonics in small diatomic molecules is theoretically investigated wit...
The generation of intense, femtosecond-duration laser pulses using near-IR to IR wavelengths of ligh...
Attosecond-resolution molecular high-order harmonic generation (MHHG) and isolated attosecond pulse ...
The harmonic generations of molecular ion H(2)(+) and D(2)(+) exposed to an intense laser field have...
We present a theory that incorporates the vibrational degrees of freedom in a high-order harmonic ge...
To fully understand atomic and molecular dynamics scientists must be able to probe and study dynamic...
We demonstrate a technique that uses high-order harmonic generation in molecules to probe nuclear dy...
We demonstrate a technique that uses high-order harmonic generation in molecules to probe nuclear dy...
We demonstrate a technique that uses high-order harmonic generation in molecules to probe nuclear dy...
In this paper, we theoretically investigate the nuclear signatures effects, i.e., the initial vibrat...
The numerical solution of the time-dependent Schrödinger equation for vibrating hydrogen molecules i...
The numerical solution of the time-dependent Schrödinger equation for vibrating hydrogen molecules i...
The numerical solution of the time-dependent Schro \u308dinger equation for vibrating hydrogen molec...
The numerical solution of the time-dependent Schro ̈dinger equation for vibrating hydrogen molecular...
The generation of high-order harmonics in small diatomic molecules is theoretically investigated wit...
The generation of high-order harmonics in small diatomic molecules is theoretically investigated wit...
The generation of intense, femtosecond-duration laser pulses using near-IR to IR wavelengths of ligh...
Attosecond-resolution molecular high-order harmonic generation (MHHG) and isolated attosecond pulse ...
The harmonic generations of molecular ion H(2)(+) and D(2)(+) exposed to an intense laser field have...
We present a theory that incorporates the vibrational degrees of freedom in a high-order harmonic ge...
To fully understand atomic and molecular dynamics scientists must be able to probe and study dynamic...
We demonstrate a technique that uses high-order harmonic generation in molecules to probe nuclear dy...
We demonstrate a technique that uses high-order harmonic generation in molecules to probe nuclear dy...
We demonstrate a technique that uses high-order harmonic generation in molecules to probe nuclear dy...
In this paper, we theoretically investigate the nuclear signatures effects, i.e., the initial vibrat...