A prototype differential atom interferometer for fundamental physics

C C. F. A. Baynham R R. Hobson O O. Buchmüller D D. Evans L L. Hawkins L L. Iannizzotto Venezze A A. Josset D D. Lee E E. Pasatembou B B. E. Sauer M M. R. Tarbutt T T. Walker O O. Ennis U U. Chauhan A A. Brzakalik S S. Dey T T. Hird S S. Lellouch M M. Holynski J J. Chen Z Z. Eyler V V. Gibson T T. L. Harte C C. C. Hsu M M. Karzazi C C. Lu B B. Millward J J. Mitchell N N. Mouelle J J. Scheper U U. Schneider Y Y. Tang K K. Tkalčec S S. Zhang J J. Carlton J J. Ellis C C. McCabe G G. Parish D D. Pathak Govardhan T T. Bowcock K K. Bridges A A. Carroll J J. Coleman G G. Elertas S S. Hindley C C. Metelko H H. Throssell J J. N. Tinsley E E. Bentine M M. Booth D D. Bortoletto N N. Callaghan C C. Foot C C. Gómez-Monedero K K. Hughes A A. James T T. Leese A A. Lowe J J. March-Russell J J. Sander J J. Schelfhout I I. Shipsey D D. Weatherill D D. Wood S S. N. Balashov M M. G. Bason K K. Hussain H H. Labiad P P. Majewski A A. L. Marchant D D. Newbold Z Z. Pan Z Z. Tam T T. C. Thornton T T. Valenzuela I I. Wilmut K K. Clarke A A. Vick S S. Hedges B B. Stray M M. Langlois K K. Bongs B B. Bostwick B B. Panchumarthi X X. Su M M. Zeuner Y Y. Zhi L L. Badurina A A. Beniwal D D. Blas V V. Vaskonen M M. G. D. van der Grinten

Abstract

Abstract Gravitational waves and ultralight dark matter are among the most compelling frontiers in fundamental physics, motivating proposals for very-long-baseline atom interferometerssuch as AION 1 , MAGIS 2 , AICE 3 and AEDGE 4 that aim to detect at frequencies at which ground-based 5 and space-borne 6 laser interferometers lose sensitivity. Very-long-baseline atom interferometers look for signals by comparing the quantum phase evolution of widely separated atomic ensembles interrogated by a common laser. However, their performance depends critically on suppressing noise sources, particularly laser phase noise. The experimental validation of such noise rejection remains an important challenge. Here we demonstrate a prototype differential atom interferometer based on the single-photon clock transition of fermionic 87 Sr. Thus, we obtain a gradiometer configuration with a species intrinsically suited to kilometre-scale and space-baseline operation. The instrument operates at the standard quantum limit 7 with no excess noise beyond atom shot noise. The differential configuration maintains quantum-limited sensitivity in the presence of several radians of artificially injected laser phase noise per shot, which emulates the conditions expected in a very-long-baseline atom interferometer. We also demonstrate the recovery of coherent oscillatory signals across a broad frequency range under fully phase-randomized conditions, a capability that is inaccessible to a single interferometer operating in the same regime. These results provide an experimental validation of the noise-immune measurement principle underlying very-long-baseline atom interferometers and mark an important step towards next-generation quantum sensors for gravitational-wave detection and searches for ultralight dark matter 8,9 .

Article Details

Journal Nature
Volume / Issue Vol. 654, Issue 8119
Published June 18, 2026
Pages 622-628
ISSN 0028-0836
Publisher Nature Portfolio

Journal Info

Nature

Nature Portfolio

ISSN: 0028-0836 Health Sciences

Authors (92)

C

C. F. A. Baynham

R

R. Hobson

O

O. Buchmüller

D

D. Evans

L

L. Hawkins

L

L. Iannizzotto Venezze

A

A. Josset

D

D. Lee

E

E. Pasatembou

B

B. E. Sauer

M

M. R. Tarbutt

T

T. Walker

O

O. Ennis

U

U. Chauhan

A

A. Brzakalik

S

S. Dey

T

T. Hird

S

S. Lellouch

M

M. Holynski

J

J. Chen

Z

Z. Eyler

V

V. Gibson

T

T. L. Harte

C

C. C. Hsu

M

M. Karzazi

C

C. Lu

B

B. Millward

J

J. Mitchell

N

N. Mouelle

J

J. Scheper

U

U. Schneider

Y

Y. Tang

K

K. Tkalčec

S

S. Zhang

J

J. Carlton

J

J. Ellis

C

C. McCabe

G

G. Parish

D

D. Pathak Govardhan

T

T. Bowcock

K

K. Bridges

A

A. Carroll

J

J. Coleman

G

G. Elertas

S

S. Hindley

C

C. Metelko

H

H. Throssell

J

J. N. Tinsley

E

E. Bentine

M

M. Booth

D

D. Bortoletto

N

N. Callaghan

C

C. Foot

C

C. Gómez-Monedero

K

K. Hughes

A

A. James

T

T. Leese

A

A. Lowe

J

J. March-Russell

J

J. Sander

J

J. Schelfhout

I

I. Shipsey

D

D. Weatherill

D

D. Wood

S

S. N. Balashov

M

M. G. Bason

K

K. Hussain

H

H. Labiad

P

P. Majewski

A

A. L. Marchant

D

D. Newbold

Z

Z. Pan

Z

Z. Tam

T

T. C. Thornton

T

T. Valenzuela

I

I. Wilmut

K

K. Clarke

A

A. Vick

S

S. Hedges

B

B. Stray

M

M. Langlois

K

K. Bongs

B

B. Bostwick

B

B. Panchumarthi

X

X. Su

M

M. Zeuner

Y

Y. Zhi

L

L. Badurina

A

A. Beniwal

D

D. Blas

V

V. Vaskonen

M

M. G. D. van der Grinten