Phase stabilization of a frequency comb using multipulse quantum interferometry

From the interaction between a frequency comb and an atomic qubit, we derive quantum protocols for the determination of the carrier-envelope offset phase, using the qubit coherence as a reference, and without the need of frequency doubling or an octave spanning comb. Compared with a trivial interfer...

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Veröffentlicht in:Physical review letters 2014-02, Vol.112 (7), p.073603-073603, Article 073603
Hauptverfasser: Cadarso, Andrea, Mur-Petit, Jordi, García-Ripoll, Juan José
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Sprache:eng
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Zusammenfassung:From the interaction between a frequency comb and an atomic qubit, we derive quantum protocols for the determination of the carrier-envelope offset phase, using the qubit coherence as a reference, and without the need of frequency doubling or an octave spanning comb. Compared with a trivial interference protocol, the multipulse protocol results in a polynomial enhancement of the sensitivity O(N-2) with the number N of laser pulses involved. We specialize the protocols using optical or hyperfine qubits, Λ schemes, and Raman transitions, and introduce methods where the reference is another phase-stable cw laser or frequency comb.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.112.073603