2026
Dengke Qu, Ievgen I. Arkhipov, Huixia Gao, Kunkun Wang, Lei Xiao, Franco Nori, and P. Xue
Physical Review Letters, 2026
Kunkun Wang, J. Lukas K. König, Kang Yang, Lei Xiao, Wei Yi, Emil J. Bergholtz, and P. Xue
Physical Review Letters, 2026
Lei Xiao, Saubhik Sarkar, Kunkun Wang, Abolfazl Bayat, and P. Xue
Physical Review Letters, 2026
2025
Xiaowei Tong, Xingze Qiu, Xiang Zhan, Quan Lin, Kunkun Wang, Franco Nori, Peng Xue
Phys. Rev. B 112, L241116
Yuhang Li, Junjing Xing, Dengke Qu, Huixia Gao, Lei Xiao, Jin-Ming Liu, Yunlong Xiao, Peng Xue
Phys. Rev. Lett. 135, 170801
Xiang Zhan, Bingzi Huo, Dengke Qu, Peng Xue
Phys. Rev. Lett. 135, 110202
Lei Xiao, Kunkun Wang, Dengke Qu, Huixia Gao, Quan Lin, Zhihao Bian, Xiang Zhan, Peng Xue
Photon. Insights 4, R09 (2025)
Haiting Zhang, Kunkun Wang, Lei Xiao, Peng Xue
Light Sci Appl 14, 253 (2025).
Dengke Qu, Kunkun Wang, Lei Xiao, Zhongliang Wang, Xiang Zhan, Haiqing Lin, Peng Xue
Huixia Gao, Konghao Sun, Dengke Qu, Kunkun Wang, Lei Xiao, Wei Yi, Peng Xue
Phys. Rev. Lett. 134, 146602
Bingzi Huo, Dengke Qu, Quan Lin, Gaoyan Zhu, Lei Xiao, Xiang Zhan, Peng Xue
2024
L. Xiao, W.-T. Xue, F. Song, Y.-M. Hu, W. Yi*, Z. Wang*, and P. Xue*
Phys. Rev. Lett. 133, 070801 (Editors' Suggestion)
L. Xiao, Y. M. Chu, Q. Lin, H. Q. Lin, W. Yi*, J. M. Cai*, and P. Xue*
Phys. Rev. Lett. 133, 180801
P. Xue*, Q. Lin, K. Wang, L. Xiao, S. Longhi*, and W. Yi*
H. Gao, K. Wang, L. Xiao, M. Nakagawa, N. Matsumoto, D. Qu, H. Lin, M. Ueda*, and P. Xue*
Phys. Rev. Lett. 132, 176601
B. Huo, D. Qu, Q. Lin, G. Zhu, L. Xiao, X. Zhan*, and P. Xue*
National Science Review, nwae263
B. Huo, Q. Lin, L. Xiao, X. Zhan, D. Qu, and P. Xue*
X. Zhan, Y. Yu, and P. Xue*
J. Lin, K. Wang, L. Xiao, D. Qu, G. Zhu, Y. Zhang*, and P. Xue*
D. Qu, E. Matwiejew, K. Wang, J. B. Wang, and P. Xue*
Quantum Sci. Technol. 9, 025014
X. W. Wang, G. Y. Zhu, L. Xiao, X. Zhan, and P. Xue*
Quantum Information Processing 23, 8
X. J. Huang, L. Xiao, K. Wang, and P. Xue*
J. Xing, Y. Li, D. Qu, L. Xiao, Z. Fan*, H. Ma*, P. Xue*, K. Bharti*, D. E. Koh*, Y. Xiao*
Communications Physics 7, 357
2023
P. Xue*, L. Xiao, G. Ruffolo, A. Mazzari, T. Temistocles, M. Terra Cunha, and R. Rabelo*
Phys. Rev. Lett. 130, 040201 (Editors' Suggestion)
P. Xue*, X. Z. Qiu, K. K. Wang, B. C. Sanders, and W. Yi
National Science Review, nwad005
K. K. Wang, L. Xiao, H. Q. Lin, W. Yi*, E. J. Bergholtz*, and P. Xue*
Q. Lin, W. Yi*, and P. Xue*
X. W. Wang, X. Zhan, Y. L. Li, L. Xiao, G. Y. Zhu, D. K. Qu, Q. Lin, Y. Yu, and P. Xue*
Phys. Rev. Lett. 131, 150803
G. Y. Zhu, Y. B. Chen, Y. Hasegawa*, and P. Xue*
Phys. Rev. Lett. 131,240401
G. Y. Zhu, A. X. Liu, L. Xiao, K. K. Wang, D. K. Qu, J. L. Li*, C. F. Qiao*, and P. Xue*
Phys. Rev. A 108, L050202 (Letter)
X. J. Huang, K. K. Wang, L. Xiao, L. Gao, H. Q. Lin, and P. Xue*
Phys. Rev. A 107, L030201 (Letter)
D. K. Qu, X. Zhan, H. Q. Lin, and P. Xue*
Phys. Rev. B 108, L180301 (Letter)
X. Zhan, D. K. Qu, and P. Xue*
H. X. Gao, K. K. Wang, D. K. Qu, Q. Lin, and P. Xue*
X. W. Wang, L. Xiao, Q. Lin, K. K. Wang, H. Q. Lin and P. Xue*
Y. Liu, H. W. Zhou, P. Xue, L. H. Lin, and H. B. Sun
2022
Q. Lin, T. Y. Li, K. K. Wang, W. Yi*, and P. Xue*
Phys. Rev. Lett. 129, 113601
Q. Lin, T. Y. Li, K. K. Wang, W. Yi*, and P. Xue*
D. K. Qu, S. Marsh, K. K. Wang, J. B. Wang*, and P. Xue*
Phys. Rev. Lett. 128, 050501
K. K. Wang, R. Q. Xia, L. Bresque, and P. Xue*
Phys. Rev. Research (Letter) 4, L032042
D. K. Qu*, K. K. Wang, X Zhan, and P. Xue*
H. X. Gao, K. K. Wang, D. K. Qu, Q. Lin, and P. Xue*
X. Mao, G.-Q. Qin, H. Yang, Z. Wang, M. Wang, G.-Q. Li, P. Xue*, and G.-L. Long*
G. Y. Zhu, C. J. Zhang, K. K. Wang, and P. Xue*
Photonics Research 10, 2047
D. K. Qu*, Y. Fan, and P. Xue*
Acta Physica Sinica 71, 130301
G. Y. Zhu, D. K. Qu, L. Xiao, and P. Xue*
Y. P. He, D. K. Qu, K. K. Wang, and X. Zhan
2021
K. K. Wang, J. C. Budich*, W. Yi*, and P. Xue*
Phys. Rev. Lett. 127, 026404
K. K. Wang, T. Y. Li, Y. W. Han, W. Yi*, and P. Xue*
Phys. Rev. Lett. 127, 270602
L. Xiao, T. S. Deng, K. K. Wang, Z. Wang*, W. Yi*, and P. Xue*
Phys. Rev. Lett. 126, 230402 (Featured in Physics, Editors' Suggestion, Cover page)
K. K. Wang, W. Yi*, S.-J. Ran*, and P. Xue*
Photonics Research 9, 12002332
L. Xiao, D. K. Qu, K. K. Wang, H. W. Li, J. Y. Dai, B. Dóra, M. Heyl, R. Moessner, W. Yi, and P. Xue*
X. Zhan, D. K. Qu, K. K. Wang, and P. Xue*
Phys. Rev. A 104, L020201 (Letter)
D. K. Qu, K. K. Wang, X. Zhan, and P. Xue*
npj Quantum Information 7, 154
G. Y. Zhu, D. Dilley, K. K. Wang, E. Chitambar, and P. Xue*
npj Quantum Information 7, 166
D. K. Qu, O. Kálmán, G. Y. Zhu, K. K. Wang, T. Kiss, and P. Xue*
D. K. Qu, K. K. Wang, X. Zhan, and P. Xue*
D. Wu, Q. Zhao, Y. Luo, H. Zhong, L. Peng, K. Chen, P. Xue, L. Li, N. Liu, C. Lu, and J. Pan
Phys. Rev. Research 3, 023017
L. Ju, M. Yang*, and P. Xue*
Y. C. Chen, M. Gong, P. Xue, H. D. Yuan, and C. J. Zhang
2020
L. Xiao, T. S. Deng, K. K. Wang, G. Y. Zhu, Z. Wang*, W. Yi*, and P. Xue*
Nature Physics 16, 761-766
K. K. Wang, Y. H. Shi, J. B. Wang, Y. N. Joglekar, and P. Xue*
Z. H. Bian, K. K. Wang, X. Zhan, F. A. Onanga, F. Ruzicka, W. Yi*, Y. N. Joglekar*, and P. Xue*
Phys. Rev. Research 2, 022039(R)
Z. H. Bian, A. S. Majumdar, C. Jebarathinam, K. K. Wang, X. Zhan, Y. S. Zhang, and P. Xue*
Phys. Rev. A 101, 020301(R)
Z. H. Bian, K. K. Wang, F. A. Onanga, F. Ruzicka, W. Yi*, Y. N. Joglekar*, and P. Xue*
Phys. Rev. A 102, 030201(R)
X. Zhan, K. K. Wang, Z. H. Bian, Y. S. Zhang, B. C. Sanders, C. J. Zhang*, and P. Xue*
Phys. Rev. A 101, 010302(R)
D. K. Qu, P. Kurzyński, D. Kaszlikowski, S. Raeisi, K. K. Wang, X. Zhan, and P. Xue*
Phys. Rev. A 101, 060101(R)
L. Xiao, B. W. Fan, K. K. Wang, A. K. Pati, and P. Xue*
Phys. Rev. Research 2, 023106
X. Zhan, K. K. Wang, Z. H. Bian, and P. Xue*
K. K. Wang, M. Y. Xu, and P. Xue*
G. Y. Zhu, B. Huo, and P. Xue*
Chin. Opt. Lett. 18, 052701
Q. Lin, H. Qin, K. K. Wang, and P. Xue*
2019
K. K. Wang, X. Qiu, X. Zhan, Z. H. Bian, B. C. Sanders, W. Yi*, and P. Xue*
K. K. Wang, X. Qiu, X. Zhan, Z. H. Bian, W. Yi*, and P. Xue*
Phys. Rev. Lett. 122, 020501
L. Xiao, K. K. Wang, X. Zhan, Z. H. Bian, K. Kawabata, M. Ueda, W. Yi, and P. Xue*
Phys. Rev. Lett. 123, 230401
G. Y. Zhu, O. Kálmán, K. K. Wang, D. K. Qu, X. Zhan, Z. H. Bian, T. Kiss, and P. Xue*
X. Qiu, T.-S. Deng, Y. Hu*, P. Xue*, and W. Yi*
L. Xiao, X. Qiu, K. K. Wang, B. C. Sanders, W. Yi*, and P. Xue*
2018
K. K. Wang, C. Emary, M. Y. Xu, X. Zhan, Z. H. Bian, and P. Xue*
Phys. Rev. A (Rapdi Communication) 97, 020101(R)
K. K. Wang, X. P. Wang, X. Zhan, Z. H. Bian, J. Li, B. C. Sanders, and P. Xue*
X. P. Wang, X. Qiu, K. K. Wang, W. Yi*, and P. Xue*
B. W. Fan, K. K. Wang, and P. Xue*
L. Xiao, X. Qiu, K. K. Wang, Z. H. Bian, X. Zhan, H. Obuse, B. C. Sanders, W. Yi*, and P. Xue*
P. Xue*, X. Zhang, K. K. Wang, X. Zhan, and X. P. Wang
Opt. Commun. 426, 558-561
P. Xue*, B. W. Fan, and K. K. Wang
Proc. SPIE 10771, Quantum Communications and Quantum Imaging XVI, 1077110 (18 September 2018); doi: 10.1117/12.2318021
2017
L. Xiao, X. Zhan, Z. H. Bian, K. K.Wang, X. Zhang, X. P. Wang, J. Li, K. Mochizuki, D. Kim, N. Kawakami, W. Yi, H. Obuse, B. C. Sanders, and P. Xue*
Nature Physics 13, 1117–1123 (DOI: 10.1038/NPHYS4204)
X. Zhan, Z. H. Bian, K. K. Wang, X. Z. Qiu, B. C. Sanders, W. Yi*, and P. Xue*
Phys. Rev. Lett. 119, 130501
X. Zhan, P. Kurzynski, D. Kaszlikowski, K. K. Wang, Z. H. Bian, Y. S. Zhang*, and P. Xue*
Phys. Rev. Lett. 119, 220403
X. Zhan, E. G. Cavalcanti, J. Li, Z. H. Bian, Y. S. Zhang, H. M. Wiseman, and P. Xue*
Z. H. Bian, J. Li, X. Zhan, J. Twamley, and P. Xue*
K. K. Wang, G. C. Knee*, X. Zhan, Z. H. Bian, J. Li, and P. Xue*
J. A. Izaac, X. Zhan, Z. H. Bian, K. K. Wang, J. Li, J. B. Wang*, and P. Xue*
L. Xiao, K. K. Wang, X. Zhan, Z. H. Bian, J. Li, Y. S. Zhang, P. Xue*, and A. K. Pati
Opt. Exp. 25, 17904 (Editor's Pick)
K. K. Wang, C. Emary, X. Zhan, Z. H. Bian, J. Li, and P. Xue*
Opt. Exp. 25, 31462 (Editor's Pick)
P. Xue*, X. Zhan, and Z. H. Bian
Scientific Reports 7, 2183
P. Xue*, K. K. Wang, and X. P. Wang
Scientific Reports 7, 45928
P. Xue*, and X. Zhang
Scientific Reports 7, 7586
Y. Wang, Y. Shang, and P. Xue
Quantum Information Processing 16, 221
2016
X. Zhan, X. Zhang, J. Li, Y. S. Zhang*, B. C. Sanders*, and P. Xue*
Phys. Rev. Lett. 116, 090401 (Editors' Suggestion)
K. K. Wang, X. Zhan, Z. H. Bian, J. Li, Y. S. Zhang*, and P. Xue*
P. Xue*, R. Zhang, H. Qin, X. Zhan, Z. H. Bian, and J. Li
Scientific Reports 6, 200095
Z. H. Bian, H. Qin, X. Zhan, J. Li, and P. Xue*
H. Luo, X. Zhan, P. Zhang and P. Xue*
2015
Experimental Quantum-Walk Revival with a Time-Dependent Coin
P. Xue*, R. Zhang, H. Qin, X. Zhan, Z. H. Bian, J. Li, and B. C. Sanders
Phys. Rev. Lett. 114, 140502
Realization of Single-Qubit Positive-Operator-Valued Measurement via a One-Dimensional Photonic Quantum Walk
Z. H. Bian, J. Li, H. Qin, X. Zhan, R. Zhang, B. C. Sanders, and P. Xue*
Phys. Rev. Lett. 114, 203602
Localized State in a Two-Dimensional Quantum Walk on a Disordered Lattice
P. Xue*, R. Zhang, Z. H. Bian, X. Zhan, H. Qin, and B. C. Sanders
Simulation of the ground states of spin rings with cavity-assisted neutral atoms
P. Xue*, X. Zhan, and Z. H. Bian
Scientific Reports 5, 7623
Linear optical demonstration of quantum speed-up with a single qudit
X. Zhan, J. Li, H. Qin, Z. H. Bian, and P. Xue*
Disordered quantum walks in two-dimensional lattices
R. Zhang, Y. Xu and P. Xue*
Properties of long quantum walks in one and two dimensions
H. Luo, and P. Xue*
Quantum Information Processing 14, 4361
2014
Observation of quasiperiodic dynamics in a one-dimensional quantum walk of single photons in space
P. Xue*, H. Qin, B. Tang, and B. C. Sanders
New Journal of Physics 16, 053009
Trapping photons on the line: controllable dynamics of a quantum walk
P. Xue*, H. Qin, and B. Tang
Scientific Reports 4, 04825
One-dimensional quantum walks with single-point phase defects
R. Zhang, P. Xue*, and J. Twamley
Perfect state transfer and efficient quantum routing: A discrete-time quantum-walk approach
X. Zhan, H. Qin, Z. H. Bian, J. Li, and P. Xue*
Two-dimensional quantum walk with position-dependent phase defect
R. Zhang, and P. Xue*
Quantum Information Processing 13, 1825-1839
Experimental realization of one-dimensional optical quantum walks
P. Xue*, H. Qin, X. Zhan, Z. H. Bian, and J. Li
Implementation of a one-dimensional quantum walk in both position and phase spaces
H. Qin, and P. Xue*
Cavity-assisted quantum computing in a silicon nanostructure
B. Tang, H. Qin, R. Zhang, J. M. Liu, and P. Xue*
2013
Controlling and reversing the transition from classical diffusive to quantum ballistic transport in a quantum walk by driving the coin
P. Xue*, and B. C. Sanders
Implementation of multi-walker quantum walks with cavity grid
P. Xue*
the Journal of Computational and Theoretical Nanoscience: Special Issue: Theoretical and Mathematical Aspects of the Discrete Time Quantum Walk (Invited) 10, 1
Non-Markovian dynamics of spin squeezing
P. Xue*
Physics Letters A 377, 1328
Non-Markovian decoherent quantum walks
P. Xue*, and Y. S. Zhang
Disorder and decoherence in coined quantum walks (Invited Review Article)
R. Zhang, H. Qin, B. Tang, and P. Xue*
Discrete-time quantum walk with nitrogen-vacancy centers in diamond coupled to a superconducting flux qubit
A. Hardal, P. Xue et al.
2012
Two quantum walkers sharing coins
P. Xue*, and B. C. Sanders
Spin-squeezing property of weighted graph states
P. Xue*
Probing multipartite entanglement in a coupled Jaynes-Cummings system
P. Xue*, Z. Ficek, and B. C. Sanders
High-fidelity quantum memory realized via Wigner crystals of polar molecules
P. Xue*, and J. Z. Wu
Improved frequency standard via weighted graph states
P. Xue*
Generation of polarization-entangled photon pairs via concurrent spontaneous parametric downconversions in a single chi((2)) nonlinear photonic crystal
Y. X. Gong, P. Xu, J. Shi, L. Chen, X. Q. Yu, P. Xue, and S. N. Zhu
Irreversibility of a quantum walk induced by controllable decoherence employing random unitary operations
Y. Y. Xu, F. Zhou, L. Chen, Y. Xie, P. Xue, and M. Feng
2011
Universal quantum computing with nanowire double quantum dots
P. Xue*
Decoherence-free spin entanglement generation and purification in nanowire double quantum dots
P. Xue*
Entangling Gate of Dipolar Molecules Coupled to a Photonic Crystal
P. Xue*
Chin. Phys. Lett. 28, 050307
Quantum Memory via Wigner Crystals of Polar Molecules
P. Xue*
Chin. Phys. Lett. 28, 120307
Quantum Computing via Singlet-Triplet Spin Qubits in Nanowire Double Quantum Dots
P. Xue*
Chin. Phys. Lett. 28, 070305
Two coupled Jaynes-Cummings cells
P. Xue*, Z. Ficek, and B. C. Sanders
Quantum Communications and Quantum Imaging IX 8163
Compact source of narrow-band counterpropagating polarization-entangled photon pairs using a single dual-periodically-poled crystal
Y.-X. Gong, Z.-D. Xie, P. Xu, X.-Q. Yu, P. Xue, and S.-N. Zhu
2010
Nearest-neighbor coupling asymmetry in the generation of cluster states in a charge-qubit structure
P. Xue*, and B. C. Sanders
Many-body interactions with single-electron quantum dots for topological quantum computation
P. Xue*
Universal quantum computing with semiconductor double-dot molecules on a chip
P. Xue*
A Controlled Phase Gate with Nitrogen-Vacancy Centers in Nanocrystal Coupled to a Silica Microsphere Cavity
P. Xue*
Chin Phys. Lett. 27, 060301
Quantum electrodynamics in a whispering gallery microcavity coated with a polymer nanolayer
Y. F. Xiao, C. L. Zou, P. Xue, et al
Dangling-bond charge qubit on a silicon surface
L. Livadaru, P. Xue, Z. Shaterzadeh-Yazdi, G. A. DiLabio, J. Mutus, J. L. Pitters, B. C. Sanders, and R. A. Wolkow
2009
Quantum walk on a line for a trapped ion
P. Xue*, B. C. Sanders, and D. Leibfreid
Phys. Rev. Lett. 103, 183602
2008
Quantum walk on circles in phase space
P. Xue*, and B. C. Sanders
Bipartite entanglement purification with neutral atoms
P. Xue*, and X.-F. Zhou
Quantum walk on a circle in phase space via superconducting circuit quantum electrodynamics
P. Xue*, B. C. Sanders, A. Blais, and K. Lalumiere
Neutral atoms with cavity-assisted interaction for robust long-distance quantum communication
P. Xue*
2006
Universal Quantum Computation in Decoherence-Free Subspace with Neutral Atoms
P. Xue*, and Y.-F. Xiao
Phys. Rev. Lett. 97, 140501
Scalable preparation of multiple-particle entangled state via the cavity input-output process
X.-M. Lin, P. Xue, et al.
2005
Multipartite entanglement preparation and quantum communication with atomic ensembles
C. Han, P. Xue, and G.-C. Guo
2004
Entanglement preparation and quantum communication with atoms in optical cavities
P. Xue*, C. Han, B. Yu, X.-M. Lin, and G.-C. Guo
Nonclassical photon pairs generated from a room-temperature atomic ensemble
W. Jiang, C. Han, P. Xue, L.-M. Duan, and G.-C. Guo
Nondeterministic scheme for preparation of nonmaximal entanglement between two atomic ensembles
P. Xue*, and G.-C. Guo
J. Opt. Soc. Am. B 21, 1358
Secure direct communication using the ‘polarization’ entangled atomic ensembles
P. Xue*, and G.-C. Guo
J. Phys. B: At. Mol. Opt. Phys, 37, 711
Implementing entanglement swapping with trapped atoms via cavity decay
X.-M. Lin, B. Yu, Z.-W. Zhou, P. Xue, and G.-C. Guo
Chin. Phys. Lett. 21, 1525
2003
Scheme for preparation of mulipartite entanglement of atomic ensembles
P. Xue*, and G.-C. Guo
Efficient scheme for multipartite entanglement and quantum information processing using atomic ensembles
P. Xue*, and G.-C. Guo
Scheme for implementing quantum dense coding via cavity QED
X.-M. Lin, Z.-W. Zhou, P. Xue, Y.-J. Gu, and G.-C. Guo
A controlled quantum key distribution scheme with three-particle entanglement
C. Han, P. Xue, and G.-C. Guo
2002
Addendum to “Efficient quantum-key-distribution scheme with nonmaximally entangled states”
P. Xue, C.-F. Li, and G.-C. Guo
Conditional efficient multiuser quantum cryptography network
P. Xue, C.-F. Li, and G.-C. Guo
2001
Efficient quantum-key-distribution scheme with nonmaximally entangled states
P. Xue, C.-F. Li, and G.-C. Guo
Reducing the communication complexity with quantum entanglement
P. Xue, Y.-F. Huang, Y.-S. Zhang, C.-F. Li, and G.-C. Guo
Three-party quantum communication complexity via entanglement tripartite pure states
P. Xue, C.-F. Li, Y.-S. Zhang, and G.-C. Guo
J. Opt. B: Quantum Semiclass. Opt. 3, 219
A two-party probabilistic communication complexity scenario via Werner states
P. Xue, C.-F. Li, and G.-C. Guo
Chin. Phys. Lett. 18, 1305