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Quantum Acoustical Imaging
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Quantum Acoustical Imaging/ by Woon Siong Gan.
Author:
Gan, Woon Siong.
Description:
XIII, 86 p. 14 illus., 3 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Acoustics. -
Online resource:
https://doi.org/10.1007/978-981-19-0983-2
ISBN:
9789811909832
Quantum Acoustical Imaging
Gan, Woon Siong.
Quantum Acoustical Imaging
[electronic resource] /by Woon Siong Gan. - 1st ed. 2022. - XIII, 86 p. 14 illus., 3 illus. in color.online resource.
Ultrasonics in the Tetrahertz Frequency Range-Theories -- Optical Transducers -- Theories and Experiments -- Quantum Theory of Terahertz Frequency Range -- Application to Nanoacoustical Imaging with Nanometer Image Resolution -- SASER-Theories and Principles based on Tetrahertz Ultrasound -- Transducers for SASER -- Applications of SASER -- Quantum Acoustical Imaging based on Quantum Mechanical Properties-Phonon Entanglement -- Quantum Acoustical Microscope based on Entanglement-Enhancement of Image Resolution -- Conclusions.
This book highlights the theories and applications of quantum acoustical imaging which can be considered as a part of quantum technology. It starts with the theories and background principles of this new field in depth.The examples of some present forms of available acoustical imaging which can be considered as quantum acoustical imaging are given such as ultrasonics in the terahertz range with the use of optical transducers for producing terahertz ultrasound and the theory of sound amplification by stimulated emission of radiation (SASER) and principles based on terahertz ultrasound. The SASER transducer is described, followed by the applications of SASER.Other examples of quantum acoustical imaging are the atomic force acoustic microscope (AFAM) and the ultrasonic force microscope. The author’s personal inventions of quantum acoustical imaging are a system based on phonons entanglement based on the quantum property of phonons entanglement and the quantum ultrasound diffraction tomography system.The advantage of quantum acoustical imaging is the defeat of the classical Rayleigh image resolution limit. An unique feature of this book is that it has gone in depth into the quantum theories of acoustical imaging such as phonons entanglement,,superposition principle and the application of transport theory.Quantum microphones and quantum transducers are also introduced with a final chapter on quantum image processing.
ISBN: 9789811909832
Standard No.: 10.1007/978-981-19-0983-2doiSubjects--Topical Terms:
670692
Acoustics.
LC Class. No.: QC221-246
Dewey Class. No.: 534
Quantum Acoustical Imaging
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Ultrasonics in the Tetrahertz Frequency Range-Theories -- Optical Transducers -- Theories and Experiments -- Quantum Theory of Terahertz Frequency Range -- Application to Nanoacoustical Imaging with Nanometer Image Resolution -- SASER-Theories and Principles based on Tetrahertz Ultrasound -- Transducers for SASER -- Applications of SASER -- Quantum Acoustical Imaging based on Quantum Mechanical Properties-Phonon Entanglement -- Quantum Acoustical Microscope based on Entanglement-Enhancement of Image Resolution -- Conclusions.
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This book highlights the theories and applications of quantum acoustical imaging which can be considered as a part of quantum technology. It starts with the theories and background principles of this new field in depth.The examples of some present forms of available acoustical imaging which can be considered as quantum acoustical imaging are given such as ultrasonics in the terahertz range with the use of optical transducers for producing terahertz ultrasound and the theory of sound amplification by stimulated emission of radiation (SASER) and principles based on terahertz ultrasound. The SASER transducer is described, followed by the applications of SASER.Other examples of quantum acoustical imaging are the atomic force acoustic microscope (AFAM) and the ultrasonic force microscope. The author’s personal inventions of quantum acoustical imaging are a system based on phonons entanglement based on the quantum property of phonons entanglement and the quantum ultrasound diffraction tomography system.The advantage of quantum acoustical imaging is the defeat of the classical Rayleigh image resolution limit. An unique feature of this book is that it has gone in depth into the quantum theories of acoustical imaging such as phonons entanglement,,superposition principle and the application of transport theory.Quantum microphones and quantum transducers are also introduced with a final chapter on quantum image processing.
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