任祥華
副研究員
| Email: | sappyjen[at]gate.sinica.edu.tw |
| Office: | R339 |
| Tel: | +886-2-2366-8261 |
| Lab: | 339 & 503 |
| Lab Tel: | +886-2-2366-8273 |
| Theoretical Quantum Optics and Ultracold Atoms Laboratory | |
研究興趣
- 量子光學、量子工程與量子資訊
- 原子–波導耦合系統與光子介導偶極–偶極交互作用
- 非厄米量子系統
- 帶有自旋的玻色凝結態
研究概述
任祥華博士的研究專長是理論量子光學和超冷原子,專注於原子 - 奈米光子波導介面、非厄米物理學和緻密原子雲中的量子相關性的研究。這些理論探索旨在通過中性原子和光之間的 集體相互作用來揭示量子工程的精要,以用於量子科學和量子技術的潛在應用。
學歷
- 民國89年,台灣大學物理系學士
- 民國93年,美國喬治亞理工大學碩士
- 民國99年,美國喬治亞理工大學博士
經歷
- 民國100年至102年,國立清華大學物理系 博士後研究員
- 民國102年至103年,德國凱澤斯勞藤理工大學物理系 博士後研究員
- 民國103年至106年,中央研究院物理所 博士後研究員
- 民國106年至109年,中央研究院物理所 助理研究學者
- 民國109年至114年,中央研究院原子與分子科學研究所 助研究員
- 民國114年迄今,中央研究院原子與分子科學研究所 副研究員
獎項與榮譽
- 民國113年中央研究院前瞻計畫
- 民國112年英國物理學會值得信賴審稿人 (表彰高水準同儕審查)
- 民國109年英國物理學會物理期刊B (原子分子與光學物理), 2019傑出審稿者
- 民國103年國家理論中心最優論文獎
- 民國101年國科會(現為NSTC)博士後論文獎
代表著作
- S. Goswami, C.-H. Chien, N. Sinclair, B. Grinkemeyer, S. Bennetts, Y.-C. Chen, and H. H. Jen, “Efficient and high-fidelity entanglement in cavity QED without high cooperativity”, Phys. Rev. Lett. 136, 050802 (2026).
- S. Goswami, S. Dhara, N. Sinclair, M. Mohageg, J. S. Sidhu, S. Mukhopadhyay, M. Krutzik, J. R. Lowell, D. K. L. Oi, M. Gündoğan, Y.-C. Chen, H. H. Jen, and C. Simon, “Satellites promise global-scale quantum networks”, Optica Quantum 3, 590 (2025). [Review article]
- I Gusti Ngurah Yudi Handayana, Yi-Lin Tsao, and H. H. Jen, “Suppression of quantum correlations in a clean-disordered atom-nanophotonic interface”, Phys. Rev. Research 7, 023303 (2025).
- H. H. Jen, “Photon-mediated dipole-dipole interactions as a resource for quantum science and technology in neutral atoms”, Quantum Sci. Technol. 10, 023001 (2025). [Topical review article]
- C. G. Feyisa, J.-S. You, H.-Y Ku, and H. H. Jen, “Accelerating multipartite entanglement generation in non-Hermitian superconducting qubits”, Quantum Sci. Technol. 10, 025021 (2025).
- C.-H. Chien, S. Goswami, C.-C. Wu, W.-S. Hiew, Y.-C. Chen, and H. H. Jen, “Generating graph states in an atom-nanophotonic interface”, Quantum Sci. Tech. 9, 025020 (2024).
- C.-C. Wu, K.-T Lin, I G. N. Y. Handayana, C.-H. Chien, S. Goswami, G.-D. Lin, Y.-C. Chen, and H. H. Jen, “Atomic excitation delocalization at the clean to disorder interface in a chirally-coupled atomic array”, Phys. Rev. Research 6, 013159 (2024).
- T. H. Chang, T. N. Wang, H. H. Jen, and Y.-C. Chen, “High-fidelity Rydberg controlled-Z gates with optimal pulses”, New J. Phys. 25, 123007 (2023).
- W.-S. Hiew and H. H. Jen, “State carving in a chirally-coupled atom-nanophotonic cavity”, New J. Phys. 25, 093018 (2023).
- C.-H. Wang, Y.-C. Wang, C.-C. Chen, C.-C. Wang, H. H. Jen, “Enhanced dark-state sideband cooling in trapped atoms via photon-mediated dipole-dipole interaction”, Phys. Rev. A 107, 023117 (2023).
- C.-C. Wang, Y.-C. Wang, C.-H. Wang, C.-C. Chen, and H. H. Jen, “Superior dark-state cooling via nonreciprocal couplings in trapped atoms”, New J. of Phys. 24, 113020 (2022).
- K. Suthar, Y.-C. Wang, Y.-P. Huang, H. H. Jen, and J.-S. You, “Non-Hermitian Many-Body Localization with Open Boundaries”, Phys. Rev. B. 106, 064208 (2022).
- Y.-C. Wang, J.-S. You, and H. H. Jen, “A non-Hermitian optical atomic mirror”, Nature Communications 13, 4598 (2022).
- H. H. Jen, G.-D. Lin, and Y.-C. Chen, “Resonant dipole-dipole interactions in electromagnetically induced transparency”, Phys. Rev. A 105, 063711 (2022).
- H. H. Jen, “Quantum correlations of localized atomic excitations in a disordered atomic chain”, Phys. Rev. A 105, 023717 (2022).
- H. H. Jen, “Bound and subradiant multi-atom excitations in an atomic array with nonreciprocal couplings”, Phys. Rev. A 103, 063711 (2021).
- H. H. Jen, “Steady-state phase diagram of a weakly driven chiral-coupled atomic chain”, Phys. Rev. Research 2, 013097 (2020).
- H. H. Jen, “Super- and sub-radiance from two-dimensional resonant dipole-dipole interactions”, Scientific Reports 9, 5804 (2019).
- H. H. Jen, and S.-K.Yip, “Spin-incoherent Luttinger liquid of one-dimensional SU(κ) fermions”, Phys. Rev. A 98, 013623 (2018).
- H. H. Jen, M.-S. Chang, and Y.-C. Chen, “Cooperative light scattering from helical-phase-imprinted atomic rings”, Scientific Reports 8, 9570 (2018).
- H. H. Jen, “Phase-imprinted multiphoton subradiant states”, Phys. Rev. A 96, 023814 (2017).
- H. H. Jen, M.-S. Chang, and Y.-C. Chen, “Cooperative single-photon subradiant states”, Phys. Rev. A 94, 013803 (2016).
- H. H. Jen, “Superradiant cascade emission in an atomic ensemble via four-wave-mixing”, Annals of Physics (N.Y.) 360, 556 (2015).
- H. H. Jen and Daw-Wei Wang, “Theory of Electromagnetically induced transparency in strongly correlated quantum gases”, Phys. Rev. A 87, 061802 (R) (2013).
- H. H. Jen, “Positive-P phase space method simulation of superradiant emission from a cascade atomic ensemble”, Phys. Rev. A 85, 013835 (2012)
- A. G. Radnaev, Y. O. Dudin, R. Zhao, H. H. Jen, S. D. Jenkins, A. Kuzmich, and T. A. B. Kennedy, “A quantum memory with telecom wavelength conversion”, Nature Physics 6, 894 (2010).
- P. Zhang, H. H. Jen, C. P. Sun, and L. You, “Angular momentum of a magnetically trapped atomic condensate”, Phys. Rev. Lett. 98, 030403 (2007).