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Random-access quantum memory using chirped pulse phase encoding

Authors :
James O’Sullivan
Oscar W. Kennedy
Kamanasish Debnath
Joseph Alexander
Christoph W. Zollitsch
Mantas Šimėnas
Akel Hashim
Christopher N. Thomas
Stafford Withington
Irfan Siddiqi
Klaus Mølmer
John J. L. Morton
Source :
O'Sullivan, J D B, Kennedy, O W, Debnath, K, Alexander, J, Zollitsch, C W, Šimėnas, M, Hashim, A, Thomas, C, Withington, S, Siddiqi, I, Mølmer, K & Morton, J J L 2022, ' Random-Access Quantum Memory Using Chirped Pulse Phase Encoding ', Physical Review X, vol. 12, no. 4, 041014 . https://doi.org/10.1103/PhysRevX.12.041014
Publication Year :
2021
Publisher :
arXiv, 2021.

Abstract

As in conventional computing, key attributes of quantum memories are high storage density and, crucially, random access, or the ability to read from or write to an arbitrarily chosen register. However, achieving such random access with quantum memories in a dense, hardware-efficient manner remains a challenge, for example requiring dedicated cavities per qubit or pulsed field gradients. Here we introduce a protocol using chirped pulses to encode qubits within an ensemble of quantum two-level systems, offering both random access and naturally supporting dynamical decoupling to enhance the memory lifetime. We demonstrate the protocol in the microwave regime using donor spins in silicon coupled to a superconducting cavity, storing up to four multi-photon microwave pulses in distinct memory modes and retrieving them on-demand up to 2~ms later. A further advantage is the natural suppression of superradiant echo emission, which we show is critical when approaching unit cooperativity. This approach offers the potential for microwave random access quantum memories with lifetimes exceeding seconds, while the chirped pulse phase encoding could also be applied in the optical regime to enhance quantum repeaters and networks.

Details

Database :
OpenAIRE
Journal :
O'Sullivan, J D B, Kennedy, O W, Debnath, K, Alexander, J, Zollitsch, C W, Šimėnas, M, Hashim, A, Thomas, C, Withington, S, Siddiqi, I, Mølmer, K & Morton, J J L 2022, ' Random-Access Quantum Memory Using Chirped Pulse Phase Encoding ', Physical Review X, vol. 12, no. 4, 041014 . https://doi.org/10.1103/PhysRevX.12.041014
Accession number :
edsair.doi.dedup.....ef14ea00c08d22b4301021faccddfb28
Full Text :
https://doi.org/10.48550/arxiv.2103.11697