Proceedings of the Sixth Meeting on CPT and Lorentz Symmetry, Bloomington, USA, 17-21 June 2013 / editor, V. Alan Kostelecký.
Material type:![Text](/opac-tmpl/lib/famfamfam/BK.png)
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- online resource
- 9814566438
- 9789814566438
- 981456642X
- 9789814566421
- 539.725 23
- QC793.3.V5 M44 2013
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Includes bibliographical references.
Preface; CONTENTS; Bounds on LLI Violation and Long-Range Spin-Spin Interactions Using Hg, Cs, and the Earth; 1. Introduction; 2. The second generation Hg-Cs LLI experiment; 3. Using our results to limit spin-spin interactions; 4. Future prospects; Acknowledgments; References; Antihydrogen, CPT, and Naturalness; 1. Introduction; 2. Naturalness and CPT; 3. Antihydrogen experiments at the CERN AD; Acknowledgments; References; Testing Lorentz Symmetry with the Double Chooz Experiment; 1. Double Chooz; 2. Sidereal variation analysis; 3. SME coefficient limits; References
4.3. Flaring active galactic nuclei5. Future prospects; References; Comments on Lorentz and CPT Violation; 1. Introduction; 2. Basics; 3. Nonminimal fermion sector; 4. Riemann-Finsler geometry; Acknowledgments; References; Testing Periodic Local Position Invariance Using Long-Term Comparison of the SYRTE Atomic Fountains and H-Masers; 1. Clock comparison; 2. Search for periodic variations and LPI coefficients; Acknowledgments; References; CPT Test with (Anti)Proton Magnetic Moments Based on Quantum Logic Cooling and Readout; 1. Classical approach; 2. Quantum logic approach; Acknowledgments
This book contains the Proceedings of the Sixth Meeting on CPT and Lorentz Symmetry, held at Indiana University in Bloomington on June 17-21, 2013. The Meeting focused on tests of these fundamental symmetries and on related theoretical issues, including scenarios for possible violations. Topics covered at the meeting include searches for CPT and Lorentz violations involving: accelerator and collider experiments; atomic, nuclear, and particle decays; birefringence, dispersion, and anisotropy in cosmological sources; clock-comparison measurements; electromagnetic resonant cavities and lasers; te.
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