activity
20122020
most citedEnhancing qubit readout through dissipative sub-Poissonian dynamics

16 citations · 21 across the 2 of their papers we have counts for

collaborators

5 papers

quant-ph2020

Generalized figure of merit for qubit readout

B. D'Anjou

Many promising approaches to fault-tolerant quantum computation require repeated quantum nondemolition (QND) readout of binary observables such as quantum bits (qubits). A commonly…

quant-ph2019

Repetitive quantum non-demolition measurement and soft decoding of a silicon spin qubit

Xiao Xue, Benjamin D'Anjou, Thomas F. Watson +8

Quantum error correction is of crucial importance for fault-tolerant quantum computers. As an essential step towards the implementation of quantum error-correcting codes, quantum n…

cond-mat.mes-hall2019

Optimal dispersive readout of a spin qubit with a microwave resonator

Benjamin D'Anjou, Guido Burkard

Strong coupling of semiconductor spin qubits to superconducting microwave resonators was recently demonstrated. These breakthroughs pave the way for quantum information processing…

quant-ph201716 cited

Enhancing qubit readout through dissipative sub-Poissonian dynamics

Benjamin D'Anjou, William A. Coish

Single-shot qubit readout typically combines high readout contrast with long-lived readout signals, leading to large signal-to-noise ratios and high readout fidelities. In recent y…

cond-mat.mes-hall20125 cited

Anomalous magnetotransport through reflection-symmetric artificial molecules

B. D'Anjou, W. A. Coish

We calculate magnetotransport oscillations in current through a triple-quantum-dot molecule, accounting for higher harmonics (having flux period h/ne, with n an integer). For a ref…