Anisotropic rare-earth spin ensemble strongly coupled to a superconducting resonator

Interfacing photonic and solid-state qubits within a hybrid quantum architecture offers a promising route towards large scale distributed quantum computing. Ideal candidates for coherent qubit interconversion are optically active spins, magnetically coupled to a superconducting resonator. We report...

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Veröffentlicht in:Physical review letters 2013-04, Vol.110 (15), p.157001-157001, Article 157001
Hauptverfasser: Probst, S, Rotzinger, H, Wünsch, S, Jung, P, Jerger, M, Siegel, M, Ustinov, A V, Bushev, P A
Format: Artikel
Sprache:eng
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Zusammenfassung:Interfacing photonic and solid-state qubits within a hybrid quantum architecture offers a promising route towards large scale distributed quantum computing. Ideal candidates for coherent qubit interconversion are optically active spins, magnetically coupled to a superconducting resonator. We report on an on-chip cavity QED experiment with magnetically anisotropic Er(3+)∶Y2SiO5 crystals and demonstrate collective strong coupling of rare-earth spins to a lumped element resonator. Moreover, the electron spin resonance and relaxation dynamics of the erbium spins are detected via direct microwave absorption, without the aid of a cavity.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.110.157001