Mid-circuit measurements and entanglement in tweezer arrays of nuclear spin qubits
POSTER
Abstract
Neutral atoms in optical tweezers are a promising quantum science architecture, owing to scalability, programmability and single-site readout. A thriving frontier seeks to expand these capabilities, drawing on the unique properties of more complex atoms. One of them is ytterbium 171: its nuclear spin ½ decoupled from electrons is a native qubit robust to decoherence, while its two valence electrons give rise to narrow-linewidth transitions used for preparation of low-entropy atom arrays and qubit manipulation.
Here, we aim to expand the toolbox with mid-circuit measurements, a central ingredient in quantum error correction. Employing microsecond-scale rotations on the clock transition and tweezer-induced light shifts, we site-selectively shelve a subset of qubits to the metastable state and measure the remainder; we will report our progress using this technique to realize mid-circuit measurement along with lossless spin-sensitive measurements. In addition, we will describe on-going work in which we perform two-qubit gates via a single-photon transition from the metastable to Rydberg state.
Here, we aim to expand the toolbox with mid-circuit measurements, a central ingredient in quantum error correction. Employing microsecond-scale rotations on the clock transition and tweezer-induced light shifts, we site-selectively shelve a subset of qubits to the metastable state and measure the remainder; we will report our progress using this technique to realize mid-circuit measurement along with lossless spin-sensitive measurements. In addition, we will describe on-going work in which we perform two-qubit gates via a single-photon transition from the metastable to Rydberg state.
Presenters
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Joanna W Lis
JILA / University of Colorado Boulder
Authors
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Joanna W Lis
JILA / University of Colorado Boulder
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Aruku Senoo
University of Colorado, Boulder
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William F McGrew
University of Colorado Boulder
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Alec Jenkins
JILA / University of Colorado Boulder
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Adam M Kaufman
JILA, University of Colorado at Boulder and NIST, JILA,CU Boulder