A way forward for fundamental physics in space
Abstract Space-based research can provide a major leap forward in the study of key open
questions in the fundamental physics domain. They include the validity of Einstein's …
questions in the fundamental physics domain. They include the validity of Einstein's …
Review of atom chips for absolute gravity sensors
D Li, W He, S Shi, B Wu, Y **ao, Q Lin, L Li - Sensors, 2023 - mdpi.com
As a powerful tool in scientific research and industrial technologies, the cold atom absolute
gravity sensor (CAGS) based on cold atom interferometry has been proven to be the most …
gravity sensor (CAGS) based on cold atom interferometry has been proven to be the most …
Quantum gas mixtures and dual-species atom interferometry in space
The capability to reach ultracold atomic temperatures in compact instruments has recently
been extended into space,. Ultracold temperatures amplify quantum effects, whereas free …
been extended into space,. Ultracold temperatures amplify quantum effects, whereas free …
High-frequency gravitational wave detection via optical frequency modulation
High frequency gravitational waves can be detected by observing the frequency modulation
they impart on photons. We discuss fundamental limitations to this method related to the fact …
they impart on photons. We discuss fundamental limitations to this method related to the fact …
A space-based quantum gas laboratory at picokelvin energy scales
Ultracold quantum gases are ideal sources for high-precision space-borne sensing as
proposed for Earth observation, relativistic geodesy and tests of fundamental physical laws …
proposed for Earth observation, relativistic geodesy and tests of fundamental physical laws …
Essay: Quantum Sensing with Atomic, Molecular, and Optical Platforms for Fundamental Physics
Atomic, molecular, and optical (AMO) physics has been at the forefront of the development of
quantum science while laying the foundation for modern technology. With the growing …
quantum science while laying the foundation for modern technology. With the growing …
Asteroids for gravitational-wave detection
MA Fedderke, PW Graham, S Rajendran - Physical Review D, 2022 - APS
A major challenge for gravitational-wave (GW) detection in the μ Hz band is engineering a
test mass (TM) with sufficiently low acceleration noise. We propose a GW detection concept …
test mass (TM) with sufficiently low acceleration noise. We propose a GW detection concept …
Atom interferometry at arbitrary orientations and rotation rates
QA de Castanet, C Des Cognets… - Nature …, 2024 - pmc.ncbi.nlm.nih.gov
The exquisite precision of atom interferometers has sparked the interest of a large
community for uses ranging from fundamental physics to geodesy and inertial navigation …
community for uses ranging from fundamental physics to geodesy and inertial navigation …
The phenomenology of quadratically coupled ultra light dark matter
A bstract We discuss models of ultralight scalar Dark Matter (DM) with linear and quadratic
couplings to the Standard Model (SM). In addition to studying the phenomenology of linear …
couplings to the Standard Model (SM). In addition to studying the phenomenology of linear …
Mitigating anthropogenic and synanthropic noise in atom interferometer searches for ultralight dark matter
J Carlton, C McCabe - Physical Review D, 2023 - APS
Atom interferometers offer promising new avenues for detecting ultralight dark matter
(ULDM). The exceptional sensitivity of atom interferometers to fluctuations in the local …
(ULDM). The exceptional sensitivity of atom interferometers to fluctuations in the local …