Compensated Ferrimagnetism Measurements and Exotic Polarized Neutron-Polarized Electron Interaction Searches in Terbium Iron Garnets
ORAL
Abstract
Rare earth iron garnets are known to be ferrimagnetic. In these materials, the magnetism associated with the electron spins undergoes a temperature-dependent orbital cancellation. This provides a dense ensemble of polarized electrons in an environment with no net magnetization and an opportunity to search for exotic interactions if the cancellation occurs at the unit cell level. We have studied the ferrimagnetic state of terbium iron garnet (Tb3Fe5O12) with neutron spin echo spectroscopy and neutron imaging to determine if the cancellation of magnetic moments occurs at the unit cell level or is the result of inhomogeneously distributed domains. The same techniques can be used to conduct searches for beyond-the-Standard Model spin-dependent neutron-electron interactions. We discuss the experimental apparatuses and results.
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Presenters
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Thomas Mulkey
Georgia State University
Authors
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Thomas Mulkey
Georgia State University
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David Baxter
Indiana Univ - Bloomington
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Matthew Frost
Oak Ridge National Lab
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Caleb D Hughes
Indiana University Bloomington
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Chenyang Jiang
Oak Ridge National Lab
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Lilian M Lommel
Indiana University - Bloomington
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Joshua C Long
Indiana University Bloomington
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Krystyna Lopez
Indiana University Bloomington
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Mary Odom
Oak Ridge National Lab
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Murad Sarsour
Georgia State University
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William M Snow
Indiana University Bloomington
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Erik Stringfellow
Oak Ridge National Lab
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Yuxuan Zhang
Oak Ridge National Lab
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Piotr Zolnierczuk
Oak Ridge National Lab