Bulletin of the American Physical Society
6th Joint Meeting of the APS Division of Nuclear Physics and the Physical Society of Japan
Sunday–Friday, November 26–December 1 2023; Hawaii, the Big Island
Session D07: Novel Approaches
9:00 AM–11:45 AM,
Wednesday, November 29, 2023
Hilton Waikoloa Village
Room: Queens 6
Chair: Albert Young, North Carolina State University
Abstract: D07.00010 : Search for New Gravity-like Short Range Interactions in the Submicron Range by means of Neutron-nanoparticle Scattering Ⅱ*
11:15 AM–11:30 AM
Presenter:
Ryota Kondo
(RCNP Osaka Univ.)
Authors:
Ryota Kondo
(RCNP Osaka Univ.)
Masayuki Hiromoto
(RCNP Osaka Univ.)
Tatsushi Shima
(RCNP Osaka Univ.)
Christopher C Haddock
(NIST)
Rintaro Nakabe
(Nagoya University)
Hirohiko M Shimizu
(Nagoya University)
Katsuya Hirota
(KEK)
Takashi Ino
(KEK)
Kenji MISHIMA
(KEK)
Masaaki Kitaguchi
(KMI Nagoya Univ.)
William M Snow
(Indiana University Bloomington)
Tamaki Yoshioka
(RCAPP Kyushu Univ.)
Collaboration:
NOP(Neutron Optics and Physics)
The SANS experiments using noble gas targets have been performed to search for new gravitylike interaction in the nanometer range[1][2]. But the sensitivity of those measurements is many orders of magnitude worse than the range of the coupling constant predicted by the Large-Extra-Dimension (LED) models [3].
Therefore, we proposed using coherent scattering for nanoparticle targets to improve sensitivity significantly [4].
Since the angular distribution also depends on the target size, it is necessary to subtract this effect measure the particle size distribution accurately.by using X-ray small-angle scattering to obtain the particle size distribution. For that purpose, X-ray small-angle scattering measurement is performedmeasured at the Aichi Synchrotron Radiation Center in Japan.
We are also planning experiments using hydrogen-absorbing vanadium nanoparticle targets.
In this presentation, I will describe the analysis results of the SANS experiment in June 2023 and the plan for future experiments on hydrogen-absorbing vanadium nanoparticles.
*This work is supported by J-PARC MLF and JSPS KAKENHI Grant Numbers JP19H01927, JP22H01231.
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