This book comprises selected peer-reviewed papers presented at the 7th Topical Conference of the Indian Society of Atomic and Molecular Physics, jointly held at IISER Tirupati and IIT Tirupati, India. The contributions address current topics of interest in atomic and molecular physics, both from the theoretical and experimental perspective. The major focus areas include quantum collisions, spectroscopy of atomic and molecular clusters, photoionization, Wigner time delay in collisions, laser cooling, Bose-Einstein condensates, atomic clocks, quantum computing, and trapping and manipulation of quantum systems. The book also discusses emerging topics such as ultrafast quantum processes including those at the attosecond time-scale. This book wi...
We publish three Roadmaps on photonic, electronic and atomic collision physics in order to celebrate...
The ISACC 2015 brought together nearly a hundred scientists in the field of atomic and molecular clu...
This introduction to Atomic and Molecular Physics explains how our present model of atoms and molecu...
The rapidly emerging field of atomic cluster collisions attracts strong research interest of many ex...
A symposium on atomic and molecular physics was held on November 18, 2005 at Goddard Space Flight Ce...
This textbook extends from the basics of femtosecond physics all the way to some of the latest devel...
The field of Atomic and Molecular Physics (AMP) has reached significant advances in high–precision e...
Probing and controlling electrons and nuclei in matter at the attosecond timescale became possible w...
Theoretical femtosecond physics is a new field of research. Theoretical investigations of atoms and ...
The PUILS series delivers up-to-date reviews of progress in Ultrafast Intense Laser Science, a newly...
The physics of ultracold atoms and molecules is extensively surveyed, including phenomena such as Bo...
The Atomic and Molecular Interactions Gordon Conferences is justifiably recognized for its broad sco...
We publish three Roadmaps on photonic, electronic and atomic collision physics in order to celebrate...
Time-resolved investigations of ultrafast electronic and molecular dynamics were not possible until ...
This book presents the latest developments in Femtosecond Chemistry and Physics for the study of ult...
We publish three Roadmaps on photonic, electronic and atomic collision physics in order to celebrate...
The ISACC 2015 brought together nearly a hundred scientists in the field of atomic and molecular clu...
This introduction to Atomic and Molecular Physics explains how our present model of atoms and molecu...
The rapidly emerging field of atomic cluster collisions attracts strong research interest of many ex...
A symposium on atomic and molecular physics was held on November 18, 2005 at Goddard Space Flight Ce...
This textbook extends from the basics of femtosecond physics all the way to some of the latest devel...
The field of Atomic and Molecular Physics (AMP) has reached significant advances in high–precision e...
Probing and controlling electrons and nuclei in matter at the attosecond timescale became possible w...
Theoretical femtosecond physics is a new field of research. Theoretical investigations of atoms and ...
The PUILS series delivers up-to-date reviews of progress in Ultrafast Intense Laser Science, a newly...
The physics of ultracold atoms and molecules is extensively surveyed, including phenomena such as Bo...
The Atomic and Molecular Interactions Gordon Conferences is justifiably recognized for its broad sco...
We publish three Roadmaps on photonic, electronic and atomic collision physics in order to celebrate...
Time-resolved investigations of ultrafast electronic and molecular dynamics were not possible until ...
This book presents the latest developments in Femtosecond Chemistry and Physics for the study of ult...
We publish three Roadmaps on photonic, electronic and atomic collision physics in order to celebrate...
The ISACC 2015 brought together nearly a hundred scientists in the field of atomic and molecular clu...
This introduction to Atomic and Molecular Physics explains how our present model of atoms and molecu...