TY - UNPB
T1 - Material size dependence on fundamental constants
AU - Pašteka, L.F.
AU - Hao, Y.
AU - Borschevsky, A.
AU - Flambaum, V.V.
AU - Schwerdtfeger, P.
PY - 2018/9/8
Y1 - 2018/9/8
N2 - Precise experimental setups for detection of variation of fundamental constants, scalar dark matter, or gravitational waves, such as laser interferometers, optical cavities and resonant-mass detectors, are directly linked to measuring changes in material size. Here we present calculated and experiment-derived estimates for both α- and µ-dependence of lattice constants and bond lengths of selected solid-state materials and diatomic molecules that are needed for interpretation of such experiments. Copyright © 2018, The Authors. All rights reserved.
AB - Precise experimental setups for detection of variation of fundamental constants, scalar dark matter, or gravitational waves, such as laser interferometers, optical cavities and resonant-mass detectors, are directly linked to measuring changes in material size. Here we present calculated and experiment-derived estimates for both α- and µ-dependence of lattice constants and bond lengths of selected solid-state materials and diatomic molecules that are needed for interpretation of such experiments. Copyright © 2018, The Authors. All rights reserved.
U2 - 10.48550/arXiv.1809.02863
DO - 10.48550/arXiv.1809.02863
M3 - Preprint
BT - Material size dependence on fundamental constants
PB - arXiv
ER -