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20172025
most citedSpin digitizer for high-fidelity readout of a cavity-coupled silicon triple quantum dot

31 citations · 32 across the 5 of their papers we have counts for

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cond-mat.mes-hall2021★ 31 cited

Spin digitizer for high-fidelity readout of a cavity-coupled silicon triple quantum dot

F. Borjans, X. Mi, J. R. Petta

An important requirement for spin-based quantum information processing is reliable and fast readout of electron spin states, allowing for feedback and error correction. However, co…

cond-mat.mes-hall2021

Probing the Spatial Variation of the Inter-Valley Tunnel Coupling in a Silicon Triple Quantum Dot

F. Borjans, X. Zhang, X. Mi +5

Electrons confined in silicon quantum dots exhibit orbital, spin, and valley degrees of freedom. The valley degree of freedom originates from the bulk bandstructure of silicon, whi…

cond-mat.mes-hall2019

Long-Range Microwave Mediated Interactions Between Electron Spins

F. Borjans, X. G. Croot, X. Mi +2

Entangling gates for electron spins in semiconductor quantum dots are generally based on exchange, a short-ranged interaction that requires wavefunction overlap. Coherent spin-phot…

cond-mat.mes-hall2019

Flopping-mode electric dipole spin resonance

X. Croot, X. Mi, S. Putz +4

Traditional approaches to controlling single spins in quantum dots require the generation of large electromagnetic fields to drive many Rabi oscillations within the spin coherence…

cond-mat.mes-hall2018

Single-Spin Relaxation in a Synthetic Spin-Orbit Field

F. Borjans, D. M. Zajac, T. M. Hazard +1

Strong magnetic field gradients can produce a synthetic spin-orbit interaction that allows for high fidelity electrical control of single electron spins. We investigate how a field…