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Trapped Ion Quantum Computing Superconducting Qubits

Proposal for a continuous wave laser with linewidth well below the standard quantum limit

arXiv
Authors: Chenxu Liu, Maria Mucci, Xi Cao, M. V. Gurudev Dutt, Michael Hatridge, David Pekker

Year

2020

Paper ID

20891

Status

Preprint

Abstract Read

~2 min

Abstract Words

150

Citations

N/A

Abstract

Due to their high coherence, a laser is a ubiquitous tool in science. We show that by engineering the coupling between the gain medium and the laser cavity as well as the laser cavity and the output port, it is possible to eliminate most of the noise due to photons entering as well as leaving the laser cavity. Hence, it is possible to reduce the laser linewidth by a factor equal to the number of photons in the laser cavity below the standard quantum limit. We design and theoretically analyze a superconducting circuit that uses Josephson junctions, capacitors and inductors to implement a microwave laser, including the low-noise couplers that allow the design to surpass the standard quantum limit. Our proposal relies on the elements of superconducting quantum information, and thus is an example of how quantum engineering techniques can inspire us to re-imagine the limits of conventional quantum systems.

Why This Paper Matters

  • This paper contributes to the Superconducting Qubits research area in the Quantum Articles archive.
  • It adds a 2020 reference point for readers tracking recent quantum research.
  • Due to their high coherence, a laser is a ubiquitous tool in science.

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