Sensing high-frequency ac fields via a two-qubit sensor

Fuente: arXiv
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Auteurs principaux: Abbas, Rizwan, Mirza, Ali Raza, Chaudhry, Adam Zaman
Format: Preprint
Publié: 2025
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author Abbas, Rizwan
Mirza, Ali Raza
Chaudhry, Adam Zaman
author_facet Abbas, Rizwan
Mirza, Ali Raza
Chaudhry, Adam Zaman
contents Quantum sensors allow us to measure weak oscillating fields with incredible precision. One common approach is to use the time evolution of a single two-level system (or a qubit) in conjunction with applied control pulses to measure the oscillating field. For high-frequency fields, the time interval required between the applied pulses decreases, meaning that errors due to the finite width of the pulses can become important. This paper presents an alternative scheme that does not rely on applying pulses with short time intervals. Our scheme uses two interacting qubits. In the presence of an oscillating field, the interaction strength changes. The oscillating field can be estimated by measuring the change in this interaction strength. We quantify the precision of this estimate by calculating the Fisher information. We show the effect of noise on our scheme and discuss how control pulses can be applied to mitigate the impact of noise. Importantly, the time interval between these pulses need not be very short.
format Preprint
id arxiv_https___arxiv_org_abs_2505_19729
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Sensing high-frequency ac fields via a two-qubit sensor
Abbas, Rizwan
Mirza, Ali Raza
Chaudhry, Adam Zaman
Quantum Physics
Quantum sensors allow us to measure weak oscillating fields with incredible precision. One common approach is to use the time evolution of a single two-level system (or a qubit) in conjunction with applied control pulses to measure the oscillating field. For high-frequency fields, the time interval required between the applied pulses decreases, meaning that errors due to the finite width of the pulses can become important. This paper presents an alternative scheme that does not rely on applying pulses with short time intervals. Our scheme uses two interacting qubits. In the presence of an oscillating field, the interaction strength changes. The oscillating field can be estimated by measuring the change in this interaction strength. We quantify the precision of this estimate by calculating the Fisher information. We show the effect of noise on our scheme and discuss how control pulses can be applied to mitigate the impact of noise. Importantly, the time interval between these pulses need not be very short.
title Sensing high-frequency ac fields via a two-qubit sensor
topic Quantum Physics
url https://arxiv.org/abs/2505.19729