論文專著:

發(fā)表學(xué)士論文24篇,均為SCI檢索。論文總引用次數(shù)160次,其中他引超過80次,單篇最高引用次數(shù)60次,他引57次。其中在物理學(xué)國(guó)際權(quán)威雜志Physical Review A 上發(fā)表論文7篇,其中4篇為第一作者。
發(fā)表英文論文:
1. Topology of Entanglement in Multipartite States with Translational Invariance.H. T. Cui, J. L. Tian, C. M. Wang,
and Y. C. Chen. Euro. Phys. J. D, in press (2013)
2. Detection of Topological Symmetry in the One-Dimensional Affleck-Kennedy--Lieb-Tasaki Model of Integer Spin with
Ultracold Spinor Atoms in Optical Lattices. CUI Hai-Tao, YANG Gui, and TIAN Jun-Long. Scientific China, in Press (2013)
3. Maximal overlap with a fully separable state and translational invariance for multipartite entangled atates
H.T.Cui , Di Yuan,and J. L. Tian PHYSICAL REVIEW 82,062116 (2010).
4. Overlap of quantum many-body states with a separable stste and phase and phase transitions in the Dicke model:zero
and finite temperature H.T. Cui PHYSICAL REVIEW A 81,042112(2010).
5. Geometric entanglement in valance-bond-solid state H.T. Cui ,C.M.Wang,and S.Z.Yuan Eur.Phys.J.B 74,543-553(2010).
6. Current-induced spin polarization for a general two-dimensional electron system C.M. Wang, H.T. Cui and Q. Lin
Physica Status Solidi B, 246(10), 2301-2306(2009).
7. Pairwise entanglement and geometric phase in high dimensional free-Fermion lattice systems H.T. Cui and Y.F. Zhang European Physics of Journal D 51, 393–400 (2009).
8. Geometric phase and quantum phase transition: Two-band model H. T. Cui, Physical Review A 78, 022101 (2008).
9. Multiparticle entanglement in the Lipkin-Meshkov-Glick model H.T. Cuiand Jie Yi Physical Review A 77, 052105
(2008).
10. Genuine tripartite entanglement and quantum phase transition Chang-shui Yu, He-shan Song, and Hai-tao Cui Chinese
Physics B 17, 1674(2008).
11. Decoherence in a two-level system coupled to a fermion environment with phase transitions L.C. Wang , H.T. Cui,
X.X. Yi Physics Letters A 372, 1387–1390 (2008).
12. Geometric phase in entangled bipartite systems, Cui H T, Wang L C, Yi X X Europhysics of Journal D 41, 385 (2007).
13. A Study on the sudden death of entanglement Cui H T ,Li K, Yi X X Physics Letter A 365, 44-48 (2007).
14. Decoherence induece by spin-chain environment Wang Lin-Cheng, Cui Hai-Tao, Yi Xue-Xi Chinese Physical Letters 10, 2648 (2006).
15. Geometric phase and quantum phase transition in the Lipkin-Meshkov-Glick model, Cui H T, Li K, Yi X X Physics
Letter A 360, 243-248 (2006).
16. Effects of entanglement on off-diagonal geometric phases Cui H T, Wang L C, Yi X X Europhysics Letters 74, 757-763 (2006).
17. Entanglement and Quantum criticality in spin chains X. X. Yi, H.T. Cui, L, C. Wang Physical Review A 72, 054102
(2006).
18. Effect of inter-subsystem coupling on the evolution of composite systems Yi XX, Cui HT, Lin YH, Song HS Physical
Review A 71, 022107 (2005).
19. Dimensionality and finite number effect on BCS transition of atomic fermi gas Cui H T, Wang L C, Yi X X
Communications in Theoretical Physics 43, 826-830 (2005).
20. Low-dimensional Bose-Einstein condensation in finite-number trapped atoms, Cui H T, Wang L C, Yi X X, 2004 Acta
Physica Sinica 53, 991-995 (2004).
21. Berry phase with quantized field driving: Effects of inter-subsystem coupling Wang LC, Cui HT, Yi XX, Physical
Review A 70, 052106 (2004).
22. A study on the fast decoherence process Cui HT, Wu W, Yi XX JOURNAL OF OPTICS B-QUANTUM AND SEMICLASSICAL OPTICS 5 , S589-S592 (2003).
23. Dynamics of the entanglement rate in the presence of decoherence X.X. Yi , H.T. Cui, X.G. Wang Physics Letters A
306, 285–290 (2003).
24. Two-component Fermi gas in a harmonic trap X. X. Yi, H. J. Wang, H. T. Cui, C. M. Zhang Physica Scripta, 66,
284-288 (2002).
媒體報(bào)道一:

勤于思考 敢于創(chuàng)新——記安陽(yáng)師范學(xué)院物理與電氣工程學(xué)院特聘教授崔海濤
作者: 鄧曉東
“博學(xué)篤行,進(jìn)德修業(yè)”,這是安陽(yáng)師范學(xué)院的校訓(xùn),也是該校物理與電氣工程學(xué)院特聘教授崔海濤所奉行的信條,他勤于思考,在教學(xué)上“用心教書,用情育人”;在科研中“不唯書,不唯上,勇攀高峰,敢于創(chuàng)新”。這些,從他在量子信息物理領(lǐng)域的研究中可見一斑。立足大背.導(dǎo)求新發(fā)展量子信息物理,顧名思義,這是一個(gè)由信息科學(xué)與量子力學(xué)學(xué)科交叉產(chǎn)生的、全新的研究方向!斑@門學(xué)科的出現(xiàn)有其重要的意義。”崔海濤介紹,“根據(jù)摩爾(Moore)定律,每18個(gè)月,計(jì)算機(jī)微處理器的速度就會(huì)增長(zhǎng)一倍,其中單位面積(或體積)上集成的元件數(shù)目也會(huì)相應(yīng)地增加?梢灶A(yù)見,在不久的將來,芯片元件就會(huì)達(dá)到它能以經(jīng)典方式工作的極限尺度。因此,如何突破這種尺度極限是當(dāng)代信息科學(xué)所面臨的一個(gè)重大科學(xué)問題。量子信息的研究就是充分利用量子物理基本原理的研究成果,發(fā)揮量子相干特性的強(qiáng)大作用,探索以全新的方式進(jìn)行計(jì)算、編碼和信息傳輸?shù)目赡苄,為突破芯片極限提供新概念、新思路和新途徑。“量子力學(xué)與信息科學(xué)結(jié)合,不僅充分顯示了學(xué)科交叉的重要性,而且量子信息的最終物理實(shí)現(xiàn),會(huì)導(dǎo)致信息科學(xué)觀念和模式的重大變革。”崔海濤說。時(shí)至今......
資料更新中……
來源: 中國(guó)發(fā)明與專利 , 2012年第3期
媒體報(bào)道二:

崔海濤的量子夢(mèng)
作者:汲曉奇
和我們熟悉的宏觀世界相比,無(wú)論是那只著名的薛定諤貓,還是兩個(gè)相距遙遠(yuǎn)卻存在“心靈感應(yīng)”的粒子,量子世界的種種現(xiàn)象(假設(shè))總是容易顛覆一些人們既定的認(rèn)識(shí)。量子物理是20世紀(jì)最偉大的科學(xué)成就之一,有著許多與我們的生活經(jīng)驗(yàn)截然不同的神奇性質(zhì)。量子物理與信息科學(xué)結(jié)合誕生了量子信息。對(duì)于這門由物理學(xué)、計(jì)算機(jī)學(xué)和信息科學(xué)的交叉,而衍生出來的學(xué)科的研究看似很復(fù)雜深?yuàn)W,卻是當(dāng)代物理學(xué)家們熱衷且樂此不疲的領(lǐng)域,來自安陽(yáng)師范學(xué)院物理與電氣工程學(xué)院的特聘教授崔海濤,正是在這一領(lǐng)域內(nèi)取得卓越研究成果的學(xué)者。迄今為止,崔海濤博士在量子信息領(lǐng)域共發(fā)表學(xué)術(shù)論文22篇,均為SCI收錄,論文總引用次數(shù)174次(Web of Science),他引近100次(Web of Science);2007年發(fā)表在Physics Letter A上的論文《A Study on thesudden death of entanglement》已被引用76次(W e b o fScience),他引73次(Web ofScience)。其他論文亦有不同程度的引用。樂于探索量子世界孜孜鉆研1997年,崔海......
資料更新中……
來源:《科學(xué)中國(guó)人》2012年第11期