Magnon dark modes and gradient memory.

Abstract:

:Extensive efforts have been expended in developing hybrid quantum systems to overcome the short coherence time of superconducting circuits by introducing the naturally long-lived spin degree of freedom. Among all the possible materials, single-crystal yttrium iron garnet has shown up recently as a promising candidate for hybrid systems, and various highly coherent interactions, including strong and even ultrastrong coupling, have been demonstrated. One distinct advantage in these systems is that spins form well-defined magnon modes, which allows flexible and precise tuning. Here we demonstrate that by dissipation engineering, a non-Markovian interaction dynamics between the magnon and the microwave cavity photon can be achieved. Such a process enables us to build a magnon gradient memory to store information in the magnon dark modes, which decouple from the microwave cavity and thus preserve a long lifetime. Our findings provide a promising approach for developing long-lifetime, multimode quantum memories.

journal_name

Nat Commun

journal_title

Nature communications

authors

Zhang X,Zou CL,Zhu N,Marquardt F,Jiang L,Tang HX

doi

10.1038/ncomms9914

subject

Has Abstract

pub_date

2015-11-16 00:00:00

pages

8914

issn

2041-1723

pii

ncomms9914

journal_volume

6

pub_type

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