4.8 Article

Protected State Enhanced Quantum Metrology with Interacting Two-Level Ensembles

Journal

PHYSICAL REVIEW LETTERS
Volume 111, Issue 12, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.111.123601

Keywords

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Funding

  1. DARPA through the QUASAR project
  2. Austrian Science Fund (FWF) [P24968-N27]
  3. Austrian Science Fund (FWF) [P 24968] Funding Source: researchfish
  4. Austrian Science Fund (FWF) [P24968] Funding Source: Austrian Science Fund (FWF)

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Ramsey interferometry is routinely used in quantum metrology for the most sensitive measurements of optical clock frequencies. Spontaneous decay to the electromagnetic vacuum ultimately limits the interrogation time and thus sets a lower bound to the optimal frequency sensitivity. In dense ensembles of two-level systems, the presence of collective effects such as superradiance and dipole-dipole interaction tends to decrease the sensitivity even further. We show that by a redesign of the Ramsey-pulse sequence to include different rotations of individual spins that effectively fold the collective state onto a state close to the center of the Bloch sphere, partial protection from collective decoherence is possible. This allows a significant improvement in the sensitivity limit of a clock transition detection scheme over the conventional Ramsey method for interacting systems and even for noninteracting decaying atoms.

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