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Field Plates for ACME III Electron EDM Search

POSTER

Abstract

The measurement of electron Electric Dipole Moment (eEDM), de, is a powerful probe for physics beyond Standard Model. The current most stringent limit of |de|<1.1×10-29 e·cm was reported by the ACME II experiment (Nature, 562(2018), 355). A primary source of systematic error in the first two generations of ACME was the polarization imperfection of the state preparation and readout lasers used to detect electron spin precession in the 31 state of ThO molecules. Most of this imperfection comes from stress-induced birefringence of the optical components along the laser path, including vacuum chamber windows and field plates. For ACME III we aim to reduce birefringence and here report on progress towards new field plates and window designs. In order to take advantage of longer precession time in our molecular beam, we are working to develop methods for fabricating larger field plates. Use of a specialized glass material with ultra-low stress-optics coefficient has been examined, and a technique for joining multiple pieces of glass with smooth surfaces at the interface has been developed. A self-calibrating polarimeter was also developed to measure small birefringence in field plate components (arXiv:1703.00963).

Presenters

  • Peiran Hu

    University of Chicago

Authors

  • Peiran Hu

    University of Chicago

  • Zhen Han

    University of Chicago

  • David P DeMille

    Yale University, The University of Chicago, University of Chicago

  • Daniel G Ang

    Harvard University

  • John M Doyle

    Harvard University

  • Gerald Gabrielse

    Northwestern University

  • Bingjie Hao

    Northwestern University

  • Ayami Hiramoto

    Okayama University

  • Nicholas Hutzler

    California Institute of Technology, Caltech, Division of Physics, Mathematics, and Astronomy, California Institute of Technology

  • Daniel D Lascar

    Northwestern University

  • Zack Lasner

    Harvard University

  • Siyuan Liu

    Northwestern University

  • Takahiko Masuda

    Okayama Univ, Okayama University

  • Cole Meisenhelder

    Harvard University

  • John Mitchell

    Northwestern University

  • Cristian D Panda

    University of California, Berkeley, UC Berkeley

  • Noboru Sasao

    Okayama University

  • Satoshi Uetake

    Okayama University

  • Xing Wu

    University of Chicago, Yale University, University of Chicago, Harvard University

  • Koji Yoshimura

    Okayama University