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Dresden 2014 – wissenschaftliches Programm

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TT: Fachverband Tiefe Temperaturen

TT 5: Transport: Quantum Coherence and Quantum Information Systems - Experiment

TT 5.4: Vortrag

Montag, 31. März 2014, 10:15–10:30, HSZ 204

Interfacing rare earth spin ensembles with superconducting circuits — •Sebastian Probst1, Andrej Tkalcec1, Daniel Rieger1, Hannes Rotzinger1, Stefan Wünsch2, Philipp Jung1, Michael Siegel2, Alexey V. Ustinov1, and Pavel Bushev31Physikalisches Institut, KIT, 76128 Karlsruhe — 2Institut für Mikro- und Nanoelektronische Systeme, KIT, 76189 Karlsruhe — 3Institut für Experimentalphysik, Universität des Saarlandes, 66123 Saarbrücken

Interfacing photonic and solid-state qubits within a hybrid quantum architecture offers a promising route towards large scale distributed quantum computing. Ensembles of optically active rare earth spins embedded in a crystalline matrix are promising candidates for realizing such an interface. We report on single photon on-chip ESR spectroscopy of Er spin ensembles strongly coupled to superconducting and non superconducting microwave resonators [1,2]. The maximum coupling strength was measured to be 45 MHz at 200 ppm, and the minimum linewidth was 4 MHz at 50 ppm Er concentration, respectively. The strong anisotropy of Er:YSO prevents us from reaching the strong coupling regime at low field transitions. However, with crystals of higher symmetry such as YAP, strong coupling can be reached at relatively small magnetic fields of 30 mT at 5 GHz. In addition, we measured T2 of the spins at millikelvins of about 40 µ s. The experiments demonstrate the potential of rare earth ion doped crystals for their application in quantum information processing and communication. [1] Phys. Rev. B 84, 06051 (R) (2011), [2] Phys. Rev. Lett. 110, 157001 (2013)

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