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Titlebook: CP Violation Without Strangeness; Electric Dipole Mome Iosif B. Khriplovich,Steve K. Lamoreaux Book 1997 Springer-Verlag Berlin Heidelberg

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Challenger Mound: A Case Study,tion of EDMs in the paper of Purcell and Ramsey [4]; an intuitive explanation of the shielding effect was first explicitly formulated in [199]. This problem was briefly lost sight of in Fairbank’s proposal to measure a .He EDM in a cryogenic system, but led Schiff to write his famous paper; the shie
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Challenger Mound: A Case Study,also at work in heavy diamagnetic atoms, and the shielding effects discussed in the last chapter are not as severe as one might expect. Furthermore, diamagnetic atoms have a number of advantages over paramagnetic atoms. For a diamagnetic atom, the EDM effect is associated with the nuclear spin direc
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Geocriticism and Spatial Literary Studieson their .-odd interactions, detailed atomic calculations must be performed. We confine ourselves in the present book to a simple, phenomenological approach to this problem. Its results are compared with those of more sophisticated atomic many-body calculations. Almost always the agreement between t
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Nature and Technology in the World Religionsasurement. For the proton dipole moment . the molecular TIF result (9.16) is even more modest. Of course, formally speaking, this is by itself the best experimental upper limit on the proton EDM. However, one can hardly imagine a situation where the proton and neutron dipole moments could differ by
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https://doi.org/10.1007/978-94-017-2394-7nding admixtures to nuclear forces lie around 10. [336–339]. In the following, we will relate all interactions to the Fermi weak interaction constant .. Since the nuclear scale of weak interactions is . ≈ 2 × 10., those limits can be formulated as 10.. The most advanced experimental proposals aim at
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-Odd Nuclear Forces,ues of the .-odd electron-nucleon interaction constants . in most theoretical models lie far away from the experimental limits. Therefore, the impression may arise that searches for .-odd effects in atoms and molecules are of no serious interest at all for elementary particle physics.
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Nebraska Symposium on Motivationarticle accelerators vs. time; the constant rate is simply a psychological result—an experiment isn’t worth doing unless one achieves at least a factor of ten improvement, and funding agencies plan in five-year units of time.) In this chapter, a brief review of neutron physics will be presented, fol
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Nature and Technology in the World Religionsues of the .-odd electron-nucleon interaction constants . in most theoretical models lie far away from the experimental limits. Therefore, the impression may arise that searches for .-odd effects in atoms and molecules are of no serious interest at all for elementary particle physics.
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