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Experimental creation of single Rydberg excitations via adiabatic passage

Ming-Ti Zhou, Jian-Long Liu, Peng-Fei Sun, Zi-Ye An, Jun Li, Xiao‐Hui Bao, Jian-Wei Pan

2020Physical review. A/Physical review, A12 citationsDOIOpen Access PDF

Abstract

In an atomic ensemble, quantum information is typically carried as single collective excitations. It is very advantageous if the creation of single excitations is efficient and robust. A Rydberg blockade enables deterministic creation of single excitations via a collective Rabi oscillation by precisely controlling the pulse area, being sensitive to many experimental parameters. In this paper, we implement the adiabatic rapid passage technique to the Rydberg excitation process in a mesoscopic atomic ensemble. We make use of a two-photon excitation scheme with an intermediate state off-resonant and sweep the laser frequency of one excitation laser. We find the chirped scheme preserves internal phases of the collective Rydberg excitation and is more robust against variance of laser intensity and frequency detuning.

Topics & Concepts

Rydberg formulaExcitationAdiabatic processMesoscopic physicsAtomic physicsPhysicsLaserRydberg atomQuantum mechanicsIonizationIonQuantum optics and atomic interactionsCold Atom Physics and Bose-Einstein CondensatesQuantum Information and Cryptography