Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

In-situ mid-circuit qubit measurement and reset in a single-species trapped-ion quantum computing system

Journal Article · · arXiv

We implement in-situ mid-circuit measurement and reset (MCMR) operations on a trapped-ion quantum computing system by using metastable qubit states in $$^{171}\textrm{Yb}^+$$ ions. We introduce and compare two methods for isolating data qubits from measured qubits: one shelves the data qubit into the metastable state and the other drives the measured qubit to the metastable state without disturbing the other qubits. We experimentally demonstrate both methods on a crystal of two $$^{171}\textrm{Yb}^+$$ ions using both the $$S_{1/2}$$ ground state hyperfine clock qubit and the $$S_{1/2}$$-$$D_{3/2}$$ optical qubit. These MCMR methods result in errors on the data qubit of about $$2\%$$ without degrading the measurement fidelity. With straightforward reductions in laser noise, these errors can be suppressed to less than $$0.1\%$$. The demonstrated method allows MCMR to be performed in a single-species ion chain without shuttling or additional qubit-addressing optics, greatly simplifying the architecture.

Research Organization:
arXiv
Sponsoring Organization:
USDOE Office of Science (SC), High Energy Physics (HEP)
Grant/Contract Number:
SC0019380
OSTI ID:
3000317
Journal Information:
arXiv, Journal Name: arXiv
Country of Publication:
United States
Language:
English

Similar Records

Non-invasive mid-circuit measurement and reset on atomic qubits
Journal Article · Tue Dec 31 23:00:00 EST 2024 · Quantum Physics · OSTI ID:2999749