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Intercontinental comparison of optical atomic clocks through very long baseline interferometry

Authors :
Ryuichi Ichikawa
J. Roda
Tetsuya Ido
Masanori Tsutsumi
Federico Perini
Filippo Levi
Giuseppe Maccaferri
Filippo Bregolin
Giampaolo Zacchiroli
Roberto Ricci
Julia Leute
Jun-ichi Komuro
Tetsuro Kondo
Rumi Takahashi
Marco Pizzocaro
Mauro Roma
Monia Negusini
Hideki Ujihara
Eiji Kawai
Nils Nemitz
Davide Calonico
E. Cantoni
Giancarlo Cerretto
Yoshihiro Okamoto
Mamoru Sekido
Gérard Petit
K. Takefuji
Kunitaka Namba
Claudio Bortolotti
Piero Barbieri
Cecilia Clivati
Alberto Mura
H. Hachisu
ITA
FRA
JPN
Source :
Nature Physics. 17:223-227
Publication Year :
2020
Publisher :
Springer Science and Business Media LLC, 2020.

Abstract

The comparison of distant atomic clocks is foundational to international timekeeping, global positioning and tests of fundamental physics. Optical-fibre links allow the most precise optical clocks to be compared, without degradation, over intracontinental distances up to thousands of kilometres, but intercontinental comparisons remain limited by the performance of satellite transfer techniques. Here we show that very long baseline interferometry (VLBI), although originally developed for radio astronomy and geodesy, can overcome this limit and compare remote clocks through the observation of extragalactic radio sources. We developed dedicated transportable VLBI stations that use broadband detection and demonstrate the comparison of two optical clocks located in Italy and Japan separated by 9,000 km. This system demonstrates performance beyond satellite techniques and can pave the way for future long-term stable international clock comparisons. Very long baseline interferometry is used to compare two optical clocks located in Japan and Italy through the observation of extragalactic radio sources. This approach overcomes limitations of the performance of satellite transfer techniques.

Details

ISSN :
17452481 and 17452473
Volume :
17
Database :
OpenAIRE
Journal :
Nature Physics
Accession number :
edsair.doi.dedup.....f8c1fbe5adcbfee4ac4b25fe71fd4595