| Literature DB >> 29547329 |
Julian C Berengut1, Dmitry Budker2,3,4, Cédric Delaunay5, Victor V Flambaum1, Claudia Frugiuele6, Elina Fuchs6, Christophe Grojean7,8, Roni Harnik9, Roee Ozeri10, Gilad Perez6, Yotam Soreq11.
Abstract
We explore a method to probe new long- and intermediate-range interactions using precision atomic isotope shift spectroscopy. We develop a formalism to interpret linear King plots as bounds on new physics with minimal theory inputs. We focus only on bounding the new physics contributions that can be calculated independently of the standard model nuclear effects. We apply our method to existing Ca^{+} data and project its sensitivity to conjectured new bosons with spin-independent couplings to the electron and the neutron using narrow transitions in other atoms and ions, specifically, Sr and Yb. Future measurements are expected to improve the relative precision by 5 orders of magnitude, and they can potentially lead to an unprecedented sensitivity for bosons within the 0.3 to 10 MeV mass range.Year: 2018 PMID: 29547329 DOI: 10.1103/PhysRevLett.120.091801
Source DB: PubMed Journal: Phys Rev Lett ISSN: 0031-9007 Impact factor: 9.161