The asymmetric photoionization of atoms irradiated by intense, few-cycle laser pulses is studied numerically. The results show that the pulse intensity affects the asymmetric photoionization in three aspects. First, at higher intensities, the asymmetry becomes distinctive for few-cycle pulses of longer durations. Second, as the laser intensity increases, the maximal asymmetry first decreases then increases after it has reached a minimal value. Last, the value of the carrier-envelope phase corresponding to the maximal asymmetry varies with the pulse intensity. This study reveals that the increasing of pulse intensity is helpful for observing the asymmetric photoionization.Physics, MultidisciplinarySCI(E)EI中国科技核心期刊(ISTIC)中国科学引文数据库(CSCD)5ARTIC...
We have measured the resonance-enhanced four-photon ionization of atomic hydrogen. The degenerate fo...
The ionization of one-electron model atoms interacting with an intense few-cycle laser pulse is calc...
International audienceThe angular distribution of photoelectrons created by multiphoton ionization o...
The photoionization of H atoms irradiated by few-cycle laser pulses is studied numerically. The vari...
Photoionization of hydrogen atoms in few-cycle laser pulses is studied numerically. The total ioniza...
The scaling law of photoionization in few-cycle laser pulses is verified in this paper. By means of ...
Using an unperturbed scattering theory, the characteristics of H atom photoionization are studied re...
The pulse duration and carry-envelope phase (CEP) are two important parameters to characterize a few...
The Keldysh theory of above-threshold ionization (ATI) is applied to few-cycle laser pulses in order...
We experimentally demonstrate the measurement of carrier-envelope phase of few-cycle laser pulses. W...
We investigate the carrier-envelope phase (CEP) and intensity dependence of the longitudinal momentu...
The influence of carrier-envelope phase (CEP) of a few-cycle laser pulse on non-sequential double io...
An analytical formula representing the photoelectron kinetic energy at which the ejection direction ...
We report on observable new features related to ionization of atoms by laser pulses of only few cycl...
We have investigated the ionization of the H atom by intense few-cycle laser pulses, in pa...
We have measured the resonance-enhanced four-photon ionization of atomic hydrogen. The degenerate fo...
The ionization of one-electron model atoms interacting with an intense few-cycle laser pulse is calc...
International audienceThe angular distribution of photoelectrons created by multiphoton ionization o...
The photoionization of H atoms irradiated by few-cycle laser pulses is studied numerically. The vari...
Photoionization of hydrogen atoms in few-cycle laser pulses is studied numerically. The total ioniza...
The scaling law of photoionization in few-cycle laser pulses is verified in this paper. By means of ...
Using an unperturbed scattering theory, the characteristics of H atom photoionization are studied re...
The pulse duration and carry-envelope phase (CEP) are two important parameters to characterize a few...
The Keldysh theory of above-threshold ionization (ATI) is applied to few-cycle laser pulses in order...
We experimentally demonstrate the measurement of carrier-envelope phase of few-cycle laser pulses. W...
We investigate the carrier-envelope phase (CEP) and intensity dependence of the longitudinal momentu...
The influence of carrier-envelope phase (CEP) of a few-cycle laser pulse on non-sequential double io...
An analytical formula representing the photoelectron kinetic energy at which the ejection direction ...
We report on observable new features related to ionization of atoms by laser pulses of only few cycl...
We have investigated the ionization of the H atom by intense few-cycle laser pulses, in pa...
We have measured the resonance-enhanced four-photon ionization of atomic hydrogen. The degenerate fo...
The ionization of one-electron model atoms interacting with an intense few-cycle laser pulse is calc...
International audienceThe angular distribution of photoelectrons created by multiphoton ionization o...