activity
20162021
most citedQuantum Gates Robust to Secular Amplitude Drifts

7 citations · 9 across the 3 of their papers we have counts for

collaborators

5 papers

quant-ph2021★ 7 cited

Quantum Gates Robust to Secular Amplitude Drifts

Qile David Su, Robijn Bruinsma, Wesley C. Campbell

Quantum gates are typically vulnerable to imperfections in the classical control fields applied to physical qubits to drive the gates. One approach to reduce this source of error i…

quant-ph2020★ 2 cited

Quasi-Classical Rules for Qubit Spin-Rotation Error Suppression

Qile David Su

A frequently encountered source of systematic error in quantum computations is imperfections in the control pulses which are the classical fields that control qubit gate operations…

quant-ph2020

Randomness Quantification for Quantum Random Number Generation Based on Detection of Amplified Spontaneous Emission Noise

Jie Yang, Fan Fan, Jinlu Liu +4

The amplified spontaneous emission (ASE) noise has been extensively studied and employed to build quantum random number generators (QRNGs). While the previous relative works mainly…

quant-ph2017

High Speed Continuous Variable Source-Independent Quantum Random Number Generation

Bingjie Xu, Ziyang Chen, Zhengyu Li +5

As a fundamental phenomenon in nature, randomness has a wide range of applications in the fields of science and engineering. Among different types of random number generators (RNG)…

quant-ph2016

A 5.4 Gbps real time quantum random number generator with compact implementation

Jie Yang, Jinlu Liu, Qi Su +4

We present a random number generation scheme based on measuring the phase fluctuations of a laser with a simple and compact experimental setup. A simple model is established to ana…