Fr. 128.00

Direct Measurement of the Hyperfine Structure Interval of Positronium Using High-Power Millimeter Wave Technology

English · Paperback / Softback

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Description

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In this thesis, the author develops new high-power millimeter wave techniques for measuring the hyperfine structure of positronium (Ps-HFS) directly for the first time in the world. Indirect measurement of Ps-HFS in the literature might have systematic uncertainties related to the use of a static magnetic field. Development of the millimeter wave devices supports the precise determination of Ps-HFS by directly measuring the Breit-Wigner resonant transition from o-Ps to p-Ps without the magnetic field. At the same time, the width of the measured Breit-Wigner resonance directly provides the lifetime of p-Ps. This measurement is the first precise spectroscopic experiment involving the magnetic dipole transition and high-power millimeter waves. The development of a gyrotron and a Fabry-Pérot cavity is described as providing an effective power of over 20 kW, which is required to cause the direct transition from o-Ps to p-Ps. Those values measured by the newly developed millimeter wave device pave the way for examining the discrepancy observed between conventional indirect experiments on Ps-HFS and the theoretical predictions of Quantum Electrodynamics.

List of contents

Introduction.- Experiment.- Analysis.- Discussion.- Conclusion.

About the author










Dr. Akira Miyazaki

Department of Physics, The University of Tokyo

miyazaki@icepp.s.u-tokyo.ac.jp


Summary

In this thesis, the author develops new high-power millimeter wave techniques for measuring the hyperfine structure of positronium (Ps-HFS) directly for the first time in the world. Indirect measurement of Ps-HFS in the literature might have systematic uncertainties related to the use of a static magnetic field. Development of the millimeter wave devices supports the precise determination of Ps-HFS by directly measuring the Breit-Wigner resonant transition from o-Ps to p-Ps without the magnetic field. At the same time, the width of the measured Breit-Wigner resonance directly provides the lifetime of p-Ps. This measurement is the first precise spectroscopic experiment involving the magnetic dipole transition and high-power millimeter waves. The development of a gyrotron and a Fabry-Pérot cavity is described as providing an effective power of over 20 kW, which is required to cause the direct transition from o-Ps to p-Ps. Those values measured by the newly developed millimeter wave device pave the way for examining the discrepancy observed between conventional indirect experiments on Ps-HFS and the theoretical predictions of Quantum Electrodynamics.

Product details

Authors Akira Miyazaki
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2016
 
EAN 9784431564058
ISBN 978-4-431-56405-8
No. of pages 122
Dimensions 155 mm x 5 mm x 235 mm
Weight 243 g
Illustrations XIII, 122 p. 79 illus., 53 illus. in color.
Series Springer Theses
Springer Theses
Subjects Natural sciences, medicine, IT, technology > Natural sciences (general)

B, Measurement, Nuclear physics, Physics and Astronomy, Heavy ions, Nuclear Physics, Heavy Ions, Hadrons, Atomic structure, Molecular structure, Atomic/Molecular Structure and Spectra, Atomic and Molecular Structure and Properties, Scientific standards, measurement etc, Measurement Science and Instrumentation, Physical measurements

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