We give a selective review of quantum mechanical methods for calculating and characterizing resonances in small molecular systems, with an emphasis on recent progress in Chebyshev and Lanczos iterative methods. Two archetypal molecular systems are discussed: isolated resonances in HCO, which exhibit regular mode and state specificity, and overlapping resonances in strongly bound HO2, which exhibit irregular and chaotic behavior. Future directions in this field are also discussed
The present paper describes results on modes of anharmonically coupled oscillators in a molecule, th...
Bound and quasibound states of HeH2+ and HeHD+ in three dimensions, for zero total angular momentum,...
textWe study the classical nonlinear dynamics and the quantum vibrational energy eigenstates of the ...
We give a selective review of quantum mechanical methods for calculating and characterizing resonanc...
International audienceThe experimental study of the quantum properties of polyatomic molecules at hi...
The role of chaotic and quasiperiodic behavior of isolated molecules is discussed. The quantum analo...
The role of chaotic and quasiperiodic behavior of isolated molecules is discussed. The quantum analo...
The role of chaotic and quasiperiodic behavior of isolated molecules is discussed. The quantum analo...
A variety of quantum mechanical methods have been developed and applied to the study of highly energ...
Resonance phenomena associated with the unimolecular dissociation of H2S --> SH + H have been invest...
The wave operator theory of quantum dynamics is applied to characterize coupled metastable states. ...
While the dynamics of model systems has been widely studied, the sizes of the systems has been limit...
The nature of molecular vibrational states at low and high energies has been studied both classical...
The nature of molecular vibrational states at low and high energies has been studied both classical...
The nature of molecular vibrational states at low and high energies has been studied both classical...
The present paper describes results on modes of anharmonically coupled oscillators in a molecule, th...
Bound and quasibound states of HeH2+ and HeHD+ in three dimensions, for zero total angular momentum,...
textWe study the classical nonlinear dynamics and the quantum vibrational energy eigenstates of the ...
We give a selective review of quantum mechanical methods for calculating and characterizing resonanc...
International audienceThe experimental study of the quantum properties of polyatomic molecules at hi...
The role of chaotic and quasiperiodic behavior of isolated molecules is discussed. The quantum analo...
The role of chaotic and quasiperiodic behavior of isolated molecules is discussed. The quantum analo...
The role of chaotic and quasiperiodic behavior of isolated molecules is discussed. The quantum analo...
A variety of quantum mechanical methods have been developed and applied to the study of highly energ...
Resonance phenomena associated with the unimolecular dissociation of H2S --> SH + H have been invest...
The wave operator theory of quantum dynamics is applied to characterize coupled metastable states. ...
While the dynamics of model systems has been widely studied, the sizes of the systems has been limit...
The nature of molecular vibrational states at low and high energies has been studied both classical...
The nature of molecular vibrational states at low and high energies has been studied both classical...
The nature of molecular vibrational states at low and high energies has been studied both classical...
The present paper describes results on modes of anharmonically coupled oscillators in a molecule, th...
Bound and quasibound states of HeH2+ and HeHD+ in three dimensions, for zero total angular momentum,...
textWe study the classical nonlinear dynamics and the quantum vibrational energy eigenstates of the ...