王洪福

文章来源:延边大学时间:2014-07-02 15:00:29

【学习简历】

2000.09―2004.07, 延边大学物理系物理学专业        本科/学士

2004.09―2007.07, 延边大学物理系光学专业          研究生/硕士

2007.09―2010.05, 哈尔滨工业大学物理系光学专业    研究生/博士

2011.10―2013.10, 大连理工大学物理学博士后流动站  博士后研究


【工作简历】

(1) 2011.01―2011.08, 延边大学第三层次引进人才;延边大学理学院物理系  讲师;

(2) 2011.09―2013.08, 延边大学理学院物理系  副教授;

(3) 2013.09―至今, 延边大学理学院物理系  教授;

(4) 2013.07―至今, 延边大学理学院物理系  专业主任,理论物理二级学科学科主任。


【研究领域】

量子计算与量子信息处理,量子光学

目前研究重点:固态量子计算与量子信息物理实现,量子算法理论研究,量子反馈控制及开放量子系统动力学研究。


【人才称号】

1) 第三批吉林省拔尖创新人才第三层次工程人选;

2) 第三批“吉林省高校新世纪科学技术优秀人才”;

3) 首批“吉林省高校科研春苗人才”;


【科研项目】

1) 基于半导体量子点-光学微腔耦合系统量子信息处理的研究,2013.01―2016.12,国家自然科学基金项目,11264042,项目负责人;

2) 量子算法及其在量子信息处理中的应用研究,2012.01―2012.12,国家自然科学基金/专项基金项目/科学部主任基金,11147174,项目负责人;

3) 半导体量子点量子计算理论研究,2012.11―2013.10,中国博士后科学基金面上项目,2012M520612,项目负责人;

4) 基于半导体量子点量子计算与量子信息处理的研究,2013.01―2014.12,吉林省教育厅首批吉林省高校科研春苗人才项目,吉教科合字[2013]第16号,项目负责人;

5) 基于腔QED和电路QED量子信息处理的研究,2014.01―2015.12,吉林省教育厅第三批“吉林省高校新世纪科学技术优秀人才”计划专项项目,吉教科合字[2014],项目负责人;

6) 基于固态系统量子计算与量子信息处理的研究,2011年07月―2014年07月,延边大学第三层次引进人才项目,950010001,项目负责人。


【奖励】

1) 2012年09月,吉林省科学技术进步奖三等奖―基于腔量子电动力学的量子计算,2012J30095,参与人;

2) 2012年09月,吉林省自然科学学术成果奖三等奖―基于腔量子电动力学的离散量子傅里叶变换算法的物理实现,20123008;负责人;

3) 2013年08月,吉林省自然科学学术成果奖二等奖―线性光学量子计算与量子信息处理,负责人;

4) 2013年08月,吉林省自然科学学术成果奖二等奖―利用固态量子比特在腔QED下实现量子克隆和多比特纠缠,参与人;

5) 2013年08月,吉林省自然科学学术成果奖三等奖―量子纠缠态制备及纠缠演化特性研究,参与人;

6) 2013年08月,吉林省自然科学学术成果奖三等奖―基于弱交叉克尔非线性的简化光学量子信息处理,参与人。


【发表论文】

目前为止在《Phys. Rev. A》、《Optics Letters》、《New Journal of Physics》、《Optics Express》、《Phys Letters A》等国内外著名学术期刊上发表SCI收录论文80余篇,第一作者SCI收录论文40余篇,论文被SCI总引334余次,h-index值为11。发表的部分论文如下:

1) Hong-Fu Wang, Ai-Dong Zhu, and Shou Zhang One-step implementation of multiqubit phase gate with one control qubit and multiple target qubits in coupled cavities, Optics Letters, 2014, 39(6): 1489-1492

2) Hong-Fu Wang, Ai-Dong Zhu, Shou Zhang, and Kyu-Hwang Yeon, Optically

controlled phase gate and teleportation of a controlled-NOT gate for spin qubits in

quantum dot-microcavity coupled system, Phys. Rev. A 2013, 87(6): 062337

3) Hong-Fu Wang, Shou Zhang. Linear optical generation of multipartite

entanglement with conventional photon detectors. Phys. Rev. A. 2009, 79(4):

042336

4) Qi Guo, Hong-Fu Wang, Shou Zhang. Simplified optical quantum-information

processing via weak cross-Kerr nonlinearities. Phys. Rev. A. 2011, 83(5):054303

5) Xiao-Qiang Shao, Hong-Fu Wang, Li Chen, Shou Zhang, Yong-Fang Zhao,

Kyu-Hwang Yeon. One-step implementation of the 1→3 orbital state quantum

cloning machine via quantum Zeno dynamics. Phys. Rev. A. 2009, 80(6), 062323

6) Hong-Fu Wang, Ai-Dong Zhu, Shou Zhang, Kyu-Hwang Yeon. Simple

implementation of discrete quantum Fourier transform via cavity quantum

electrodynamics, New. J. Phys. 2011, 13(1): 013021

7) Xiao-Qiang Shao, Hong-Fu Wang, Li Chen, Shou Zhang, Yong-Fang Zhao, Kyu-Hwang Yeon. Converting two-atom singlet state into three-atom singlet state via quantum Zeno dynamics. New. J. Phys. 2010, 12(2): 023040

8) Hong-Fu Wang, Ai-Dong Zhu, and Shou Zhang, Physical optimization of quantum

error correction circuits with spatially separated quantum dot spins, Optics Express 2013,

21(10): 12484-12494

9) Hong-Fu Wang, Shou Zhang, Ai-Dong Zhu, X. X. Yi, Kyu-Hwang Yeon. Local

conversion of four Einstein-Podolsky-Rosen photon pairs into four-photon

polarization-entangled decoherence-free states with non-photon-number-resolving

detectors, Optics Express. 2011, 19(25): 25433-25440

10) Liu-Yong Cheng, Hong-Fu Wang, Shou Zhang, Kyu-Hwang Yeon. Quantum state engineering with nitrogen-vacancy centers coupled to low-Q microresonator,

Optics Express. 2013, 21(5): 5988-5997

11) Hong-Fu Wang, Ai-Dong Zhu, Shou Zhang, and Kyu-Hwang Yeon,

Deterministic CNOT gate and entanglement swapping for photonic qubits using a

quantum-dot spin in a double-sided optical microcavity. Phys. Lett. A. 2013,

377(40): 2870-2876.

12) Hong-Fu Wang, Xin Ji, Shou Zhang, Improving the security of multiparty quantum secret splitting and quantum state sharing. Phys. Lett. A. 2006, 358(1), 11-14

13) Hong-Fu Wang, Ai-Dong Zhu, Shou Zhang, and Kyu-Hwang Yeon, Quantum

computation and entangled state generation via long-range off-resonant Raman

coupling, Quantum. Inf. Process. 2013, 12(6):2207-2217.

14) Hong-Fu Wang, Shou Zhang, Kyu-Hwang Yeon. Scheme for entanglement concentration of unknown partially entangled three-atom W states in cavity QED. Quantum. Inf. Process. 2012, 11(2):431-441

15) Hong-Fu Wang, Shou Zhang, X. X. Yi, Xin Ji, Kyu-Hwang Yeon. Robust and scalable scheme to generate multipartite atom-photon and atom-atom entangled W states by interference, J. Opt. Soc. Am. B. 2012, 29(1):1-6

16) Hong-Fu Wang, Shou Zhang, Kyu-Hwang Yeon.  Iterative quantum algorithm

for distributedclock synchronization, Chin. Phys. B. 2012, 21(10):100309

17) Hong-Fu Wang, Shou Zhang, Ai-Dong Zhu, Kyu-Hwang Yeon. Fast and

effective implementation of discrete quantum Fourier transform via

virtual-photon-induced process in separate cavities, J. Opt. Soc. Am. B. 2012,

29(5):1078-1084

18) Hong-Fu Wang, Shou Zhang, Kyu-Hwang Yeon. Scheme for entanglement

concentration of unknown partially entangled three-atom W states in cavity QED.

Quantum. Inf. Process. 2012, 11(2):431-441

19) Hong-Fu Wang, Shou Zhang, X. X. Yi, Xin Ji, Kyu-Hwang Yeon. Robust and scalable scheme to generate multipartite atom-photon and atom-atom entangled W states by interference, J. Opt. Soc. Am. B. 2012, 29(1):1-6

20) Hong-Fu Wang, Shou Zhang, Kyu-Hwang Yeon. Efficient quantum circuit for

implementing discrete quantum Fourier transform in solid-state qubits.

J. Phys. B: At. Mol. Phys. 2011, 44(11):115502

21) Hong-Fu Wang, Xiao-Qiang Shao, Yong-Fang Zhao, Shou Zhang, Kyu-Hwang

Yeon. Scheme for implementing linear optical quantum iSWAP gate with

conventional photon detectors. J. Opt. Soc. Am. B. 2010, 27(1): 27-31

22) Hong-Fu Wang, Shou Zhang, Kyu-Hwang Yeon. Linear-optics-based

entanglement concentration of unknown partially entangled three-photon W states. J. Opt. Soc. Am. B. 2010, 27(10): 2159-2164

23) Hong-Fu Wang, Shou Zhang, Kyu-Hwang Yeon. Linear optical scheme for entanglement concentration of two partially entangled three-photon W states. Eur. Phys. J. D. 2010, 56(2): 271-275

24) Hong-Fu Wang, Xiao-Qiang Shao, Yong-Fang Zhao, Shou Zhang, Kyu-Hwang

Yeon. Protocol  and quantum circuit for implementing N-bit discrete quantum

Fourier transform in cavity QED. J. Phys. B: At. Mol. Phys. 2010, 43(6): 065503

25) Hong-Fu Wang, Ai-Dong Zhu, Shou Zhang, Kyu-Hwang Yeon. Scheme for

entanglement concentration of unknown atomic entangled states by interference of

polarized photons. J. Phys. B: At. Mol. Phys. 2010, 43(23),235501

26) Hong-Fu Wang, Xiao-Qiang Shao, Yong-Fang Zhao, Shou Zhang, Kyu-Hwang

Yeon. Linear optical implementation of ancilla-free quantum SWAP gate.

Phys. Scr. 2010, 81(1): 015011

37) Hong-Fu Wang, Shou Zhang. Scheme for linear optical preparation of a type of

four-photon entangled state with conventional photon detectors.

Eur. Phys. J. D. 2009, 53(3):359-363

28) Hong-Fu Wang, Xiao-Qiang Shao, Yong-Fang Zhao, Shou Zhang, Kyu-Hwang

Yeon. Schemes for generation of multipartite entanglement of atoms trapped in

separate optical cavities. J. Phys. B: At. Mol. Phys. 2009, 42(17): 175506