Short-range test of the universality of gravitational constant $G$ at the millimeter scale using a digital image sensor
Abstract
The composition dependence of gravitational constant is measured at the millimeter scale to test the weak equivalence principle, which may be violated at short range through new Yukawa interactions such as the dilaton exchange force. A torsion balance on a turning table with two identical tungsten targets surrounded by two different attractor materials (copper and aluminum) is used to measure gravitational torque by means of digital measurements of a position sensor. Values of the ratios and were and , respectively; these were obtained at a center to center separation of 1.7 cm and surface to surface separation of 4.5 mm between target and attractor, which is consistent with the universality of . A weak equivalence principle (WEP) violation parameter of at the shortest range of around 1 cm was also obtained.
Keywords
Cite
@article{arxiv.1708.01482,
title = {Short-range test of the universality of gravitational constant $G$ at the millimeter scale using a digital image sensor},
author = {K. Ninomiya and T. Akiyama and M. Hata and M. Hatori and T. Iguri and Y. Ikeda and S. Inaba and H. Kawamura and R. Kishi and H. Murakami and Y. Nakaya and H. Nishio and N. Ogawa and J. Onishi and S. Saiba and T. Sakuta and S. Tanaka and R. Tanuma and Y. Totsuka and R. Tsutsui and K. Watanabe and J. Murata},
journal= {arXiv preprint arXiv:1708.01482},
year = {2017}
}
Comments
submitted to Class. Quantum Grav