基本信息

姓名:武松林

职称:副教授

联系电话:

电子邮箱:slwu@dlnu.edu.cn

教育经历

渤海大学,物理学教育专业,理学学士

渤海大学,理论物理专业,理学硕士

大连理工大学,理论物理专业,理学博士

工作经历

2012.11-至今,88858cc永利官网,教师

2024.02-2025.02,西班牙巴斯克大学,访问学者

研究领域

量子力学基本问题、开放量子系统理论、量子控制理论

荣誉

奖励

科研项目

1. 国家自然科学基金面上项目,驱动耗散量子系统动力学的理论研究2026.01 - 2029.1253万元

2. 国家自然科学基金面上项目,量子开放系统混合态绝热捷径技术的理论研究2021.01 - 2024.1260万元

3. 国家自然科学基金青年基金,开放量子系统动力学不变量及其应用,2017.01 - 2019.1220万元

4. 国家自然科学基金专项基金项目,基于依赖于时间的退相干不变子空间的相干控制方案,2014.01 - 2014.125万元

代表论文

[1] Z.-M. Wang, S.-L. Wu(共同第一作者), M. S. Byrd, and L.-A. Wu, “Analytical solutions of bilinear bosonic models and exact characterization of non-Markovian dynamics,” Phys. Rev. A 111, 062206 (2025).

[2] S.-L. Wu, W. Ma, and L.-A. Wu, “Creating dynamic leakage-free paths using coarse-graining techniques in the presence of decoherence,” Phys. Rev. A 110, 032212 (2024).

[3] X. Niu, J. Li, S.-L. Wu, and X.-X. Yi, “Effect of quantum jumps on non-Hermitian systems,” Phys. Rev. A 108, 032214 (2023).

[4] W. Ma, X.-L. Huang, and S.-L. Wu*, “Dynamics of a driven open double two-level system and its entanglement generation,” Phys. Rev. A 107, 032409 (2023).

[5] S.-L. Wu, X.-L. Huang, and X.-X. Yi, “Driven Markovian master equation based on the Lewis–Riesenfeld-invariant theory,” Phys. Rev. A 106, 052217 (2022).

[6] S.-L. Wu and W. Ma, “Trajectory tracking for non-Markovian quantum systems,” Phys. Rev. A 105, 012204 (2022).

[7] S.-L. Wu, W. Ma, X.-L. Huang, and X.-X. Yi, “Shortcuts to adiabaticity for open quantum systems and a mixed-state inverse engineering scheme,” Phys. Rev. Appl. 16, 044028 (2021).

[8] S.-L. Wu, X.-L. Huang, and X.-X. Yi, “Fast trajectory tracking of the steady state of open quantum systems,” Phys. Rev. A 99, 042115 (2019).

[9] S.-L. Wu, X.-L. Huang, H. Li, and X.-X. Yi, “Adiabatic evolution of decoherence-free subspaces and its shortcuts,” Phys. Rev. A 96, 042104 (2017).

[10] W. Ma, X.-J. Cao, and S.-L. Wu*, “Inverse incoherent engineering,” Opt. Express 25, 23850–23861 (2017).

[11] S.-L. Wu, X.-Y. Zhang, and X.-X. Yi, “Dynamical invariants of open quantum systems,” Phys. Rev. A 92, 062122 (2015).

[12] S.-L. Wu, “Engineering of a quantum state by time-dependent decoherence-free subspaces,” Phys. Rev. A 91, 032104 (2015).

[13] S.-L. Wu, L.-C. Wang, and X.-X. Yi, “Time-dependent decoherence-free subspace,” J. Phys. A: Math. Theor. 45, 405305 (2012).

[14] H.-D. Liu, S.-L. Wu, and X.-X. Yi, “Berry phase and Hannay’s angle in a quantum-classical hybrid system,” Phys. Rev. A 83, 062101 (2011).

[15] S.-L. Wu, X.-L. Huang, L.-C. Wang, and X.-X. Yi, “Information flow, non-Markovianity, and geometric phases,” Phys. Rev. A 82, 052111 (2010).

[16] X.-L. Huang, S.-L. Wu, L.-C. Wang, and X.-X. Yi, “Born–Oppenheimer approximation for open quantum systems within the quantum trajectory approach,” Phys. Rev. A 81, 052113 (2010).

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