Roman V. Krems is a professor of theoretical chemistry at the University of British Columbia in Vancouver, Canada. His current research focuses on understanding the effects of electromagnetic fields on dynamics of few- and many-body molecular systems, the interaction properties of molecules at extremely low temperatures, and applications of machine learning to molecular physics.
Molecules in Electromagnetic Fields. From Ultracold Physics to Controlled Chemistry
Par :Formats :
- Paiement en ligne :
- Livraison à domicile ou en point Mondial Relay estimée à partir du 30 septembreCet article sera commandé chez un fournisseur et vous sera envoyé 25 jours après la date de votre commande.
- Retrait Click and Collect en magasin gratuit
- Nombre de pages352
- FormatGrand Format
- PrésentationRelié
- Poids0.775 kg
- Dimensions16,8 cm × 23,5 cm × 2,4 cm
- ISBN978-1-118-17361-9
- EAN9781118173619
- Date de parution05/11/2018
- ÉditeurWiley
Résumé
A tutorial for calculating the response of molecules to electric and magnetic fields with examples from research in ultracold physics, controlled chemistry, and molecular collisions in fields. Molecules in Electromagnetic Fields : From Ultracold Physics to Controlled Chemistry is intended to serve as a tutorial for students beginning research, theoretical or experimental, in an area related to molecular physics.
The author—a noted expert in the field—offers a systematic discussion of the effects of static and dynamic electric and magnetic fields on the rotational, fine, and hyperfine structure of molecules. The book illustrates how the concepts developed in ultracold physics research have led to what may be the beginning of controlled chemistry in the fully quantum regime. Offering a glimpse of the current state of the art research, this book suggests future research avenues for ultracold chemistry.
The text describes theories needed to understand recent exciting developments in the research on trapping molecules, guiding molecular beams, laser control of molecular rotations, and external field control of microscopic intermolecular interactions. In addition, the author presents the description of scattering theory for molecules in electromagnetic fields and offers practical advice for students working on various aspects of molecular interactions.
This important text : Describes the effects of electromagnetic fields on the structure of molecular energy levels Describes some of the most useful theories for ultracold molecule researchers Presents a wealth of illustrative examples from recent experimental and theoretical work Contains helpful exercises to reinforce concepts presented throughout text Written for senior undergraduate and graduate students, professors, researchers, physicists, physical chemists, and chemical physicists, Molecules in Electromagnetic Fields : From Ultracold Physics to Controlled Chemistry is an interdisciplinary text describing theories and examples from the core of contemporary molecular physics.
The author—a noted expert in the field—offers a systematic discussion of the effects of static and dynamic electric and magnetic fields on the rotational, fine, and hyperfine structure of molecules. The book illustrates how the concepts developed in ultracold physics research have led to what may be the beginning of controlled chemistry in the fully quantum regime. Offering a glimpse of the current state of the art research, this book suggests future research avenues for ultracold chemistry.
The text describes theories needed to understand recent exciting developments in the research on trapping molecules, guiding molecular beams, laser control of molecular rotations, and external field control of microscopic intermolecular interactions. In addition, the author presents the description of scattering theory for molecules in electromagnetic fields and offers practical advice for students working on various aspects of molecular interactions.
This important text : Describes the effects of electromagnetic fields on the structure of molecular energy levels Describes some of the most useful theories for ultracold molecule researchers Presents a wealth of illustrative examples from recent experimental and theoretical work Contains helpful exercises to reinforce concepts presented throughout text Written for senior undergraduate and graduate students, professors, researchers, physicists, physical chemists, and chemical physicists, Molecules in Electromagnetic Fields : From Ultracold Physics to Controlled Chemistry is an interdisciplinary text describing theories and examples from the core of contemporary molecular physics.


