R. Miller

Atomic Qubit Manipulations with an Electro-Optic Modulator

P. J. Lee, B. B. Blinov, K. Brickman, L. Deslauriers, M. J. Madsen, R. Miller, D. L. Moehring [1], D. Stick [1], C. Monroe [1]

Abstract

We report new techniques for driving high-fidelity stimulated Raman transitions in trapped ion qubits. An electro-optic modulator induces sidebands on an optical source, and interference between the sidebands allows coherent Rabi transitions to be efficiently driven between hyperfine ground states separated by 14.53 GHz in a single trapped 111Cd+ ion.

Sympathetic Cooling of Trapped Cd+ Isotopes

B. B. Blinov, L. Deslauriers [1], P. Lee [1], M. J. Madsen, R. Miller [1], C. Monroe [1]

Abstract

We sympathetically cool a trapped 112Cd+ ion by directly Doppler-cooling a 114Cd+ ion in the same trap. This is the first demonstration of optically addressing a single trapped ion being sympathetically cooled by a different species ion. Notably, the experiment uses a single laser source, and does not require strong focusing. This paves the way toward reducing decoherence in an ion trap quantum computer based on Cd+ isotopes.