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Noah Schlossberger (Fed)

Publications

Primary quantum thermometry of mm-wave blackbody radiation via induced state transfer in Rydberg states of cold atoms

Author(s)
Noah Schlossberger, Andrew Rotunno, Stephen Eckel, Eric Norrgard, Dixith Manchaiah, Nikunjkumar Prajapati, Alexandra Artusio-Glimpse, Samuel Berweger, Matthew Simons, Dangka Shylla, William Watterson, Charles Patrick, Adil Meraki, Rajavardhan Talashila, Amanda Younes, David La Mantia, Christopher Holloway
Rydberg states of alkali-metal atoms are highly sensitive to electromagnetic radiation in the GHz-to-THz regime because their transitions have large electric di

Data and Software Publications

Observation of Asymmetric Sideband Generation in Strongly-driven Rydberg Atoms

Author(s)
Dangka Shylla, Nikunjkumar Prajapati, Andrew P. Rotunno, Noah Schlossberger, Dixith Manchaiah, William J. Watterson, Alexandra Artusio-Glimpse, Samuel Berweger, Matthew T. Simons, Christopher L. Holloway
Improving the bandwidth of Rydberg atom-based receivers is an ongoing challenge owing to the long-lived Rydberg state lifetimes that limit the refresh rate of ground state atoms. In particular, the LO

Dataset presenting improved bandwidth in Rydberg atom electrometry with an optical frequency comb probe

Author(s)
Alexandra B. Artusio-Glimpse, David A. Long, Sean M. Bresler, Nikunjkumar Prajapati, Dangka Shylla, Andrew P. Rotunno, Matthew T. Simons, Samuel Berweger, Noah Schlossberger, Thomas W. LeBrun, Christopher L. Holloway
Rydberg atom-based receivers of modulated radio frequency (RF) fields are promising systems for measurements. These systems are self-calibrating, widely tunable, nearly transparent to RF fields, and

Rydberg Atom Electrometry: Recent Sensitivity and Bandwidth Improvements

Author(s)
Nikunjkumar Prajapati, Alexandra Artusio-Glimpse, Samuel Berweger, Mattew Simons, Noah Schlossberger, Dangka Shylla, William Watterson, Dixith Manchaiah, Christopher L. Holloway
We present recent improvements within the growing field of Rydberg atom sensors. While initially started as a path towards absolute, independent measurements of electric fields, the research landscape
Created August 31, 2019, Updated September 13, 2023
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