A cavity-enhanced system encodes qubits in polarization of intracavity modes and uses polarization-selective nonlinearities to implement universal gates, with scaling analysis indicating feasible conditional phases in small cavities using accessible materials.
In: 2019 IEEE International Electron Devices Meeting (IEDM), pp
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Develops mixed-precision iterative refinement for low-rank Lyapunov equations with rounding error analysis enabling reduced precision for moderately conditioned problems.
Fast gate-based reflectometry readout of Pauli spin blockade and tunable interdot coupling demonstrated in industry-fabricated silicon double quantum dots.
Dislocations in (011) β-Ga₂O₃ substrates lie on (001) planes along [010], form arrays at domain boundaries, and produce ~10^{-5} rad misorientations detectable by XRT and reticulography.
A practical review summarizing principles and requirements of modern cryogenic systems from flow cryostats to dilution refrigerators for solid-state quantum optical devices.
citing papers explorer
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Cavity-Enhanced Collective Quantum Processing with Polarization-Encoded Qubits
A cavity-enhanced system encodes qubits in polarization of intracavity modes and uses polarization-selective nonlinearities to implement universal gates, with scaling analysis indicating feasible conditional phases in small cavities using accessible materials.
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Mixed-precision iterative refinement for low-rank Lyapunov equations
Develops mixed-precision iterative refinement for low-rank Lyapunov equations with rounding error analysis enabling reduced precision for moderately conditioned problems.
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Fast readout for large scale spin-based qubits
Fast gate-based reflectometry readout of Pauli spin blockade and tunable interdot coupling demonstrated in industry-fabricated silicon double quantum dots.
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Dislocations in (011)-oriented vertical Bridgman $\beta$-Ga$_2$O$_3$ substrates
Dislocations in (011) β-Ga₂O₃ substrates lie on (001) planes along [010], form arrays at domain boundaries, and produce ~10^{-5} rad misorientations detectable by XRT and reticulography.
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Cryogenic Systems for Quantum Photonic Technologies: A Practical Review
A practical review summarizing principles and requirements of modern cryogenic systems from flow cryostats to dilution refrigerators for solid-state quantum optical devices.