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Mesoscopic Route to Time Travel
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SpringerLink (Online service)
Mesoscopic Route to Time Travel
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Mesoscopic Route to Time Travel/ by Prosenjit Singha Deo.
Author:
Singha Deo, Prosenjit.
Description:
XIII, 116 p. 56 illus., 6 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Mathematical physics. -
Online resource:
https://doi.org/10.1007/978-981-16-4465-8
ISBN:
9789811644658
Mesoscopic Route to Time Travel
Singha Deo, Prosenjit.
Mesoscopic Route to Time Travel
[electronic resource] /by Prosenjit Singha Deo. - 1st ed. 2021. - XIII, 116 p. 56 illus., 6 illus. in color.online resource.
Open systems -- Closed systems -- Larmor clock and Friedel sum rule -- Scattering in Q1D -- Negative partial density of states -- Time travel.
This book gives a general introduction to theoretically understand thermodynamic properties and response to applied fields of mesoscopic systems that closely relate to experiments. The book clarifies many conceptual and practical problems associated with the Larmor clock and thus makes it a viable approach to study these properties. The book is written pedagogically so that a graduate or undergraduate student can follow it. This book also opens up new research areas related to the unification of classical and quantum theories and the meaning of time. It provides a scientific mechanism for time travel which is of immense fascination to science as well as society. It is known that developments in mesoscopic physics can lead to downscaling of device sizes. So, new or experienced researchers can have a quick introduction to various areas in which they might contribute in the future. This book is expected to be a valuable addition to the subject of mesoscopic physics.
ISBN: 9789811644658
Standard No.: 10.1007/978-981-16-4465-8doiSubjects--Topical Terms:
527831
Mathematical physics.
LC Class. No.: QC19.2-20.85
Dewey Class. No.: 530.1
Mesoscopic Route to Time Travel
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This book gives a general introduction to theoretically understand thermodynamic properties and response to applied fields of mesoscopic systems that closely relate to experiments. The book clarifies many conceptual and practical problems associated with the Larmor clock and thus makes it a viable approach to study these properties. The book is written pedagogically so that a graduate or undergraduate student can follow it. This book also opens up new research areas related to the unification of classical and quantum theories and the meaning of time. It provides a scientific mechanism for time travel which is of immense fascination to science as well as society. It is known that developments in mesoscopic physics can lead to downscaling of device sizes. So, new or experienced researchers can have a quick introduction to various areas in which they might contribute in the future. This book is expected to be a valuable addition to the subject of mesoscopic physics.
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