DOE OSTI · 3014048
Background cancellation for frequency-selective quantum sensing
Abstract
A key challenge in quantum sensing is the detection of weak time dependent signals, particularly those that arise as specific frequency perturbations over a background field. Conventional methods usually demand complex dynamical control of the quantum sensor and heavy classical post-processing. We propose a quantum sensor that leverages time independent interactions and entanglement to function as a passive, tunable, thresholded frequency filter. By encoding the frequency selectivity and thresholding behavior directly into the dynamics, the sensor is responsive only to a target frequency of choice whose amplitude is above a threshold. This approach circumvents the need for complex control schemes and reduces the post-processing overhead.
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Puig, Ricard [Los Alamos; Ecole Polytechnique, Lausanne] (ORCID:0009000665343081), Constantinides, Nathan [Los Alamos; Maryland U., College Park], Madhusudhana, Bharath Hebbe [Los Alamos], Bowring, Daniel [Fermilab] (ORCID:0000000193802587), Alderete, C. Huerta [Los Alamos], Sornborger, Andrew T. [Los Alamos]. 2026-01-14. Background cancellation for frequency-selective quantum sensing. https://www.osti.gov/biblio/3014048
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