Versatile Control of ^{9}Be^{+} Ions Using a Spectrally Tailored UV Frequency Comb

We demonstrate quantum control of ^{9}Be^{+} ions directly implemented by an optical frequency comb. Based on numerical simulations of the relevant processes in ^{9}Be^{+} for different magnetic field regimes, we demonstrate a wide applicability when controlling the comb's spectral properties....

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Veröffentlicht in:Physical review letters 2019-03, Vol.122 (12), p.123606-123606
Hauptverfasser: Paschke, A-G, Zarantonello, G, Hahn, H, Lang, T, Manzoni, C, Marangoni, M, Cerullo, G, Morgner, U, Ospelkaus, C
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Sprache:eng
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Zusammenfassung:We demonstrate quantum control of ^{9}Be^{+} ions directly implemented by an optical frequency comb. Based on numerical simulations of the relevant processes in ^{9}Be^{+} for different magnetic field regimes, we demonstrate a wide applicability when controlling the comb's spectral properties. We introduce a novel technique for the selective and efficient generation of a spectrally tailored narrow-bandwidth optical frequency comb near 313 nm. We experimentally demonstrate internal state control and internal-motional state coupling of ^{9}Be^{+} ions implemented by stimulated-Raman manipulation using a spectrally optimized optical frequency comb. Our pulsed laser approach is a key enabling step for the implementation of quantum logic and quantum information experiments in Penning traps.
ISSN:1079-7114
DOI:10.1103/PhysRevLett.122.123606