Two-step hyperentanglement purification with the quantum-state-joining method
BC Ren, FF Du, FG Deng - Physical Review A, 2014 - APS
Hyperentanglement is a promising resource in quantum information processing, especially
for increasing the channel capacity of long-distance quantum communication …
for increasing the channel capacity of long-distance quantum communication …
Ultra-narrow inhomogeneous spectral distribution of telecom-wavelength vanadium centres in isotopically-enriched silicon carbide
Spin-active quantum emitters have emerged as a leading platform for quantum
technologies. However, one of their major limitations is the large spread in optical emission …
technologies. However, one of their major limitations is the large spread in optical emission …
Hyper-parallel photonic quantum computation with coupled quantum dots
BC Ren, FG Deng - Scientific reports, 2014 - nature.com
It is well known that a parallel quantum computer is more powerful than a classical one. So
far, there are some important works about the construction of universal quantum logic gates …
far, there are some important works about the construction of universal quantum logic gates …
Hyperentanglement purification for two-photon six-qubit quantum systems
GY Wang, Q Liu, FG Deng - Physical Review A, 2016 - APS
Recently, two-photon six-qubit hyperentangled states were produced in experiment and they
can improve the channel capacity of quantum communication largely. Here we present a …
can improve the channel capacity of quantum communication largely. Here we present a …
Compact quantum gates on electron-spin qubits assisted by diamond nitrogen-vacancy centers inside cavities
HR Wei, FG Deng - Physical Review A—Atomic, Molecular, and Optical …, 2013 - APS
Constructing compact quantum circuits for universal quantum gates on solid-state systems is
crucial for quantum computing. We present some compact quantum circuits for a …
crucial for quantum computing. We present some compact quantum circuits for a …
Universal quantum gates on electron-spin qubits with quantum dots inside single-side optical microcavities
HR Wei, FG Deng - Optics express, 2014 - opg.optica.org
We present some compact quantum circuits for a deterministic quantum computing on
electron-spin qubits assisted by quantum dots inside single-side optical microcavities …
electron-spin qubits assisted by quantum dots inside single-side optical microcavities …
Error-detected generation and complete analysis of hyperentangled Bell states for photons assisted by quantum-dot spins in double-sided optical microcavities
GY Wang, Q Ai, BC Ren, T Li, FG Deng - Optics Express, 2016 - opg.optica.org
We construct an error-detected block, assisted by the quantum-dot spins in double-sided
optical microcavities. With this block, we propose three error-detected schemes for the …
optical microcavities. With this block, we propose three error-detected schemes for the …
Scalable photonic quantum computing assisted by quantum-dot spin in double-sided optical microcavity
HR Wei, FG Deng - Optics express, 2013 - opg.optica.org
We investigate the possibility of achieving scalable photonic quantum computing by the
giant optical circular birefringence induced by a quantum-dot spin in a double-sided optical …
giant optical circular birefringence induced by a quantum-dot spin in a double-sided optical …
Error-rejecting quantum computing with solid-state spins assisted by low- optical microcavities
T Li, FG Deng - Physical Review A, 2016 - APS
We present an efficient proposal for error-rejecting quantum computing with quantum dots
(QDs) embedded in single-sided optical microcavities based on the interface between the …
(QDs) embedded in single-sided optical microcavities based on the interface between the …
Hybrid quantum gates between flying photon and diamond nitrogen-vacancy centers assisted by optical microcavities
HR Wei, G Lu Long - Scientific reports, 2015 - nature.com
Hybrid quantum gates hold great promise for quantum information processing since they
preserve the advantages of different quantum systems. Here we present compact quantum …
preserve the advantages of different quantum systems. Here we present compact quantum …