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Publications

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Equal contribution

2026

[45]
Asadullah Bhuiyan, Haining Pan, Chao-Ming Jian. Free-Fermion Dynamics with Measurements: Topological Classification and Adaptive Preparation of Topological States. Phys. Rev. Res. 8 (2): 023147, 2026.
[44]
Jacob R. Taylor, Haining Pan, Jay D. Sau, Sankar Das Sarma. Avoiding Dilution: Using Diffusion and Vision Transformers to Resolve Majorana Features in Nanowires at High Temperature. arXiv:2607.14949, 2026.
[43]
Justin B. Hart, Awwab A. Azam, Thomas Li, Yunxuan Li, Ye Bi, Haining Pan, Jiabin Yu. Representability-Aware Neural Networks for Reduced Density Matrices: Application to Fractional Chern Insulators. arXiv:2605.20326, 2026.
[42]
Sankar Das Sarma, Katharina Laubscher, Haining Pan, Jay D. Sau, Tudor D. Stanescu. Rashba Spin-Orbit Coupling and Artificially Engineered Topological Superconductors. Phys. Rev. B 113 (13): 139604, 2026.
[40]
Haining Pan, Jacob R. Taylor, Jay D. Sau, Sankar Das Sarma. Ballistic Transport in One-Dimensional Rashba Systems in the Context of Majorana Nanowires. Phys. Rev. B 113 (11): 115426, 2026.
[39]
Haining Pan, Nakul Aggarwal, J. H. Pixley. Pruning-Induced Phases in Fully-Connected Neural Networks: The Eumentia, the Dementia, and the Amentia. arXiv.2603.12316, 2026.

2025

[38]
Jacob Taylor, Haining Pan, Sankar Das Sarma. Unreasonable Effectiveness of Unsupervised Learning in Identifying Majorana Topology. arXiv:2512.13825, 2025.
[37]
Haining Pan, James V. Roggeveen, Erez Berg, Juan Felipe Carrasquilla Alvarez, Debanjan Chowdhury, Surya Ganguli, Federico Ghimenti, Juraj Hasik, Henry S. Hunt, Hong-Chen Jiang, Mason Kamb, Ying-Jer Kao, Ehsan Khatami, Michael J. Lawler, Di Luo, Titus Neupert, Xiaoliang Qi, Michael Brenner, Eun-Ah Kim. CMT-Benchmark: A Benchmark for Condensed Matter Theory Built by Expert Researchers. The Fourteenth International Conference on Learning Representations, 2025.
[36]
Haining Pan, Hassan Shapourian, Chao-Ming Jian. Topological Modes in Monitored Quantum Dynamics. Phys. Rev. B 112 (14): 144301, 2025.
[35]
Bibek Pokharel (equal contribution), Haining Pan (equal contribution), Kemal Aziz, Luke C. G. Govia, Sriram Ganeshan, Thomas Iadecola, Justin H. Wilson, Barbara A. Jones, Abhinav Deshpande, Jedediah H. Pixley, Maika Takita. Order from Chaos with Adaptive Circuits on Quantum Hardware. arXiv:2509.18259, 2025.
[34]
Kemal Aziz, Haining Pan, Michael J. Gullans, J. H. Pixley. Classical Simulations of Low Magic Quantum Dynamics. ArXiv250820252 Accept. Talk QIP 2026, 2025.
[33]
Phanibhusan S. Mahapatra, Haining Pan, Kenji Watanabe, Takashi Taniguchi, J. H. Pixley, Eva Y. Andrei. Quantum Criticality and Tunable Griffiths Phase in Superconducting Twisted Trilayer Graphene. arXiv:2507.10687, 2025.
[32]
Haining Pan, Thomas Iadecola, E. M. Stoudenmire, J. H. Pixley. Control-Driven Critical Fluctuations across Quantum Trajectories. arXiv:2504.10803, 2025.
[31]
Haining Pan, Sankar Das Sarma, Chun-Xiao Liu. Rabi and Ramsey Oscillations of a Majorana Qubit in a Quantum Dot-Superconductor Array. Phys. Rev. B 111 (7): 075416 Editors' Suggestion, 2025.
[30]
Haining Pan, Nayantara Mudur, William Taranto, Maria Tikhanovskaya, Subhashini Venugopalan, Yasaman Bahri, Michael P. Brenner, Eun-Ah Kim. Quantum Many-Body Physics Calculations with Large Language Models. Commun. Phys. 8 (1): 49, 2025.

2024

[29]
Hao Cui, Zahra Shamsi, Gowoon Cheon, Xuejian Ma, Shutong Li, Maria Tikhanovskaya, Peter Christian Norgaard, Nayantara Mudur, Martyna Beata Plomecka, Paul Raccuglia, Yasaman Bahri, Victor V. Albert, Pranesh Srinivasan, Haining Pan, Philippe Faist, Brian A. Rohr, Michael J. Statt, Dan Morris, Drew Purves, Elise Kleeman, Ruth Alcantara, Matthew Abraham, Muqthar Mohammad, Ean Phing VanLee, Chenfei Jiang, Elizabeth Dorfman, Eun-Ah Kim, Michael Brenner, Sameera S. Ponda, Subhashini Venugopalan. CURIE: Evaluating LLMs on Multitask Scientific Long-Context Understanding and Reasoning. The Thirteenth International Conference on Learning Representations, 2024.
[28]
James L. Hart (equal contribution), Haining Pan (equal contribution), Saif Siddique, Noah Schnitzer, Krishnanand Mallayya, Shiyu Xu, Lena F. Kourkoutis, Eun-ah Kim, Judy J. Cha. Real-Space Visualization of a Defect-Mediated Charge Density Wave Transition. Proc. Natl. Acad. Sci. 121 (33): e2402129121, 2024.
[27]
Haining Pan, Sankar Das Sarma. Disordered Majorana Nanowires: Studying Disorder without Any Disorder. Phys. Rev. B 110 (7): 075401, 2024.
[26]
Haining Pan, Sriram Ganeshan, Thomas Iadecola, Justin H. Wilson, J. H. Pixley. Local and Nonlocal Stochastic Control of Quantum Chaos: Measurement- and Control-Induced Criticality. Phys. Rev. B 110 (5): 054308, 2024.

2023

[24]
Haining Pan, Eun-Ah Kim, Chao-Ming Jian. Realizing a Tunable Honeycomb Lattice in ABBA-stacked Twisted Double Bilayer ${\mathrm{WSe}}_{2}$. Phys. Rev. Res. 5 (4): 043173, 2023.
[23]
Sankar Das Sarma, Haining Pan. Density of States, Transport, and Topology in Disordered Majorana Nanowires. Phys. Rev. B 108 (8): 085415, 2023.
[22]
Chun-Xiao Liu (equal contribution), Haining Pan (equal contribution), F. Setiawan, Michael Wimmer, Jay D. Sau. Fusion Protocol for Majorana Modes in Coupled Quantum Dots. Phys. Rev. B 108 (8): 085437, 2023.
[21]
Ming Xie, Haining Pan, Fengcheng Wu, Sankar Das Sarma. Nematic Excitonic Insulator in Transition Metal Dichalcogenide Moiré Heterobilayers. Phys. Rev. Lett. 131 (4): 046402, 2023.
[20]
Haining Pan, Sankar Das Sarma. Majorana Nanowires, Kitaev Chains, and Spin Models. Phys. Rev. B 107 (3): 035440, 2023.

2021

[15]
Seongjin Ahn (equal contribution), Haining Pan (equal contribution), Benjamin Woods (equal contribution), Tudor D. Stanescu, Sankar Das Sarma. Estimating Disorder and Its Adverse Effects in Semiconductor Majorana Nanowires. Phys. Rev. Mater. 5 (12): 124602, 2021.
[14]
Haining Pan, Sankar Das Sarma. Crossover between Trivial Zero Modes in Majorana Nanowires. Phys. Rev. B 104 (5): 054510, 2021.
[13]
Haining Pan, Sankar Das Sarma. Interaction-Driven Filling-Induced Metal-Insulator Transitions in 2D Moiré Lattices. Phys. Rev. Lett. 127 (9): 096802, 2021.
[12]
Haining Pan, S. Das Sarma. Disorder Effects on Majorana Zero Modes: Kitaev Chain versus Semiconductor Nanowire. Phys. Rev. B 103 (22): 224505, 2021.
[11]
Haining Pan, Chun-Xiao Liu, Michael Wimmer, Sankar Das Sarma. Quantized and Unquantized Zero-Bias Tunneling Conductance Peaks in Majorana Nanowires: Conductance below and above $2{e}^{2}/h$. Phys. Rev. B 103 (21): 214502, 2021.
[10]
Sankar Das Sarma, Haining Pan. Disorder-Induced Zero-Bias Peaks in Majorana Nanowires. Phys. Rev. B 103 (19): 195158, 2021.

2020

[8]
Haining Pan, Fengcheng Wu, Sankar Das Sarma. Quantum Phase Diagram of a Moiré-Hubbard Model. Phys. Rev. B 102 (20): 201104, 2020.
[7]
Haining Pan, Fengcheng Wu, Sankar Das Sarma. Band Topology, Hubbard Model, Heisenberg Model, and Dzyaloshinskii-Moriya Interaction in Twisted Bilayer ${\mathrm{WSe}}_{2}$. Phys. Rev. Res. 2 (3): 033087, 2020.
[6]
Haining Pan, S. Das Sarma. Physical Mechanisms for Zero-Bias Conductance Peaks in Majorana Nanowires. Phys. Rev. Res. 2 (1): 013377, 2020.
[5]
Haining Pan, William S. Cole, Jay D. Sau, S. Das Sarma. Generic Quantized Zero-Bias Conductance Peaks in Superconductor-Semiconductor Hybrid Structures. Phys. Rev. B 101 (2): 024506, 2020.

2019

[4]
A. Sett, Haining Pan, P. E. Falloon, J. B. Wang. Zero Transfer in Continuous-Time Quantum Walks. Quantum Inf. Process. 18 (5): 159, 2019.
[3]
Haining Pan, Jay D. Sau, Tudor D. Stanescu, S. Das Sarma. Curvature of Gap Closing Features and the Extraction of Majorana Nanowire Parameters. Phys. Rev. B 99 (5): 054507, 2019.
[2]
Haining Pan, K. Winkler, Mats Powlowski, Ming Xie, A. Schade, M. Emmerling, M. Kamp, S. Klembt, C. Schneider, Tim Byrnes, S. Hofling, Na Young Kim. Two-Kind Boson Mixture Honeycomb Hamiltonian of Bloch Exciton-Polaritons. Phys. Rev. B 99 (4): 045302, 2019.

2018

[1]
Yingyi Huang, Haining Pan, Chun-Xiao Liu, Jay D. Sau, Tudor D. Stanescu, S. Das Sarma. Metamorphosis of Andreev Bound States into Majorana Bound States in Pristine Nanowires. Phys. Rev. B 98 (14): 144511, 2018.