öλÔÓéÀֵǼÈë¿ÚÏÂÔØ

±±¾©Àí¹¤´óѧÎïÀíѧԺÑо¿Éúµ¼Ê¦£ºÕÅÏò¶«

±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø/2019-05-29

±±ÀíÎïÀíѧԺÑо¿Éúµ¼Ê¦ÕÅÏò¶«½éÉÜÈçÏ£º

ÐÕÃû£ºÕÅÏò¶«

ËùÔÚѧ¿Æ£ºÎïÀíѧԺ

Ö°³Æ£ºÕý¸ß

E-mail£ºzhangxd@bit.edu.cn

¸öÈ˼òÀú

1988ºÍ1993ÄêÔÚºÓ±±Ê¦·¶´óѧÎïÀíϵ»ñµÃÎïÀíѧѧʿºÍ˶ʿѧ룬1998Äê4ÔÂÔÚÖпÆÔºÎïÀíËù»ñ²©Ê¿Ñ§Î»£¬ÏÖΪ±±¾©Àí¹¤´óÑ§ÌØÆ¸½ÌÊÚ¡£

¹¤×÷¾­Àú

1998Äê5ÔÂÖÁ2002Äê7ÔÂÔÚÏã¸Û¿Æ¼¼´óѧÎïÀíϵ×÷·ÃÎÊѧÕß´Óʲ©Ê¿ºóÑо¿, 2002Äê8ÔÂÖÁ2011Äê9ÔÂÈα±¾©Ê¦·¶´óѧÎïÀíϵ½ÌÊÚ¡¢²©Ê¿Éúµ¼Ê¦£¬2011Äê10Ôµ÷Èë±±¾©Àí¹¤´óѧÎïÀíѧԺ¹¤×÷¡£

¿ÆÑз½Ïò

(1)¹âºÍÈ˹¤½á¹¹²ÄÁÏ(¹â×Ó¾§Ìå, metamaterials, plasmonics ÒÔ¼°Ê¯Ä«Ï©µÈ¶þά²ÄÁÏ)µÄÏ໥×÷Óã»

(2)Á¿×ÓÐÅÏ¢, Á¿×Ó¼ÆËã, Á¿×Ó´«¸ÐºÍ³ÉÏñ£»

(3)¹âÁ¿×ÓоƬ£¬»ùÓÚ¹â×ÓоƬµÄÈ˹¤ÖÇÄܺͻúеѧϰ;£»

(4) ÄÉÃ×¹âѧºÍ¹âµç×ÓÆ÷¼þ¡£

Ñо¿ÊֶΣºÀíÂÛºÍʵÑéÏà½áºÏ¡£

ѧÊõ³É¾Í

¶àÄêÀ´Ò»Ö±ÖÂÁ¦ÓÚ¹â×Ó¾§ÌåºÍµÍάÄÉÃ׽ṹµÄÎïÀíÌØÐÔ¼°ÆäÓ¦ÓÃÑо¿£¬Ì½ÌÖÀûÓÃÈ˹¤Î¢Äɽṹµ÷¿Ø¾­µäºÍÁ¿×ӹⳡ£¬²¢È¡µÃÁ˶àÏгɹû£º

(1) Ê״ι۲⵽Á˹âºÍÉùµÄZitterbewegungЧӦ£¬Ö¤Ã÷ÁËÏà¶ÔÂÛÁ¿×ÓÁ¦Ñ§ÖÐÒ»¸ö³¤ÆÚµÄÀíÂÛÔ¤ÑÔ£¬Nature ChinaµÄÑо¿ÁÁµãרÃű¨µÀÁËÕâÒ»¹¤×÷, ·¢±íÔÚ¡¶Nature¡·ÉϵÄÂÛÎÄÒ²¶ÔÕâ¸ö¹¤×÷×öÁ˺ܺÃÒýÓÃºÍÆÀÊö£»

(2) ÀûÓõ¥¹â×Ӻ;À²øË«¹â×ÓÔÚʵÑéÉÏÊ״ι۲쵽ÁËÁ¿×ÓTalbotЧӦ£¬¸üÕýÁ˹ýÈ¥ÈËÃÇÔÚÁ¿×Ó³ÉÏñÑо¿·½ÃæÒ»Ð©´íÎóÈÏʶ;

(3) Ê×´ÎÔÚ¹â×Ó×¼¾§Öй۲쵽Á˸ºÕÛÉäÏÖÏó£¬ÔÚ12ÖØ¹â×Ó×¼¾§Öз¢ÏÖÁË´óµÄ¾ø¶Ô¹â×Ó´øÏ¶£¬²¢Ö¸³öÁË¡¶Nature¡·ÉÏÒ»ÆªÖØÒªÎÄÕµĴíÎó£»

(4) ͨ¹ýÑϸñÊýֵģÄâÊ×ÏÈÔÚÉù×Ó¾§ÌåÖй۲쵽¸ºÕÛÉäÏÖÏ󣬲¢·¢ÏÖÁË×ÔÐý×ӵĸºÕÛÉ䣻

(5) ÔÚÎÞÐò¶¯Á¦Ñ§ÖÐÂÊÏÈ´ÓÀíÂÛÉϽÒʾ³ö׼һάµ½ÈýάµÄ¶¯Á¦Ñ§½»²æÐÐΪ£¬ºó±»ÊµÑéËù֤ʵ£»

(6) Éè¼Æ³öÁ˹â¶à²ãʯīϩºÍÍØÆË¾øÔµÌå²ÄÁÏ£¬Í¨¹ýÑϸñÊýֵģÄâÖ¤Ã÷²¨ÔÚÕâЩ²ÄÁÏÖд«²¥ÓµÓжÔÓ¦µç×ÓϵͳÏàÀàËÆµÄÌØÐÔ£»

(7) ¹Û²ìµ½Á˸ºµÄµç×ÓÄÜÁ¿ËðʧºÍ·ÇÏßÐÔSmith-PurcellЧӦ£¬ÔÚÊÖÕ÷½éÖʱíÃæ·¢ÏÖÁËÒì³£¹â×ÔÐý»ô¶ûЧӦ£»

(8) ÂÊÏÈÔÚÌú´ÅźºÏË«½áÖз¢ÏÖ³¬¹ý90%µÄ¾ÞËí´©´Åµç×裬²¢±»ÊµÑé֤ʵ£»

(9) ÀûÓÃ3D´òÓ¡¼¼ÊõÖÆ±¸³öÁËmetamaterials²¨»ùоƬ£¬ÊµÏÖÁËÁ¿×ÓËÑË÷Ëã·¨£»

(10) ÔÚ¸ßάÁ¿×ÓϵͳÖÐͨ¹ý¶¨Á¿ÒýÈë¿É¿Ø¸÷ÏòͬÐÔÔëÉù·½·¨£¬Ê×´ÎʵÑéÉϾ«È·ÑéÖ¤Á˸ßά²Ù¿Ø(steering)ЧӦºÍÔëÉùÒÖÖÆÏÖÏó¡£

ÔÚPhys. Rev. Lett.¡¢Adv. Matter.¡¢Appl. Phys. Lett. ºÍ Phys. RevA/B/EµÈºËÐÄÆÚ¿¯ÉÏ·¢±íÂÛÎÄ160ÓàÆª£¬ÂÛÎı»°üÀ¨·¢±íÔÚNature¡¢Science¡¢Nature Materials¡¢Nature PhysicsºÍ Phys. Rev. Lett.µÈSCIÆÚ¿¯ÉϵÄÂÛÎÄÒýÓÃ4000Óà´Î¡£Ôø¶à´ÎÔÚ¹ú¼Ê´ó»áÉÏ×öÑûÇ뱨¸æ£¬Ñо¿³É¹û±»Physics Web¡¢Phys. WorldµÈרÃű¨µÀ¡£2004ÄêÈëÑ¡½ÌÓý²¿¡¶ÐÂÊÀ¼ÍÓÅÐãÈ˲ÅÖ§³Ö¼Æ»®¡·£¬2008Äê»ñ¹ú¼Ò½Ü³öÇàÄê¿ÆÑ§»ù½ð¡£Ä¿Ç°³Ðµ£¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðÃæÉÏÏîÄ¿¡¢¿Æ¼¼²¿ÖØ´óÑо¿¼Æ»®/Á¿×Óµ÷¿ØµÈ×Ó¿ÎÌâ¶àÏî¡£

½ÌѧºÍÑо¿ÉúÅàÑø

(1) ½Ìѧ: ½²ÊÚÁ˶àÃű¾¿ÆÉúºÍÑо¿Éú¿Î³Ì£¬È磺¡¶Á¦Ñ§¡·¡¢¡¶¸ßµÈÁ¿×ÓÁ¦Ñ§¡·¡¢¡¶»ù´¡ÎïÀí¡·¡¢¡¶ÊýÀíÓ빤³Ì¡·¡¢¡¶ÎïÀíÇ°ÑØÑ¡½²¡·µÈ¡£

(2) Ñо¿ÉúÅàÑø: ÒÑÅàÑø²©Ê¿Ñо¿Éú20ÓàÃû£¬Ë¶Ê¿Ñо¿Éú10¶àÃû£¬Ä¿Ç°ËûÃÇÔÚ¸ßУ¡¢¿ÆÑлú¹¹¡¢ÒøÐС¢¹«Ë¾µÈÐÐÒµµÄ¶àÖÖ¸ÚλÉϹ¤×÷¡£

²¿·Ö·¢±íÂÛÎÄ£¨´ø‘*’×÷ÕßΪÑо¿Éú£©£º

¡¾1¡¿Qiang Zeng*, Bo Wang, Pengyun Li and Xiangdong Zhang, Experimental High-Dimensional Einstein-Podolsky-Rosen Steering, Phys. Rev. Lett. 120, 030401 (2018).

¡¾2¡¿Weixuan Zhang*, Kaiyang Cheng, Chao Wu, Yi Wang, Hongqiang Li and Xiangdong Zhang, Implementing Quantum Search Algorithm with Metamaterials, Adv. Mater. 29, 1703986 (2017) .

¡¾3¡¿Weixuan Zhang*, Tong Wu, Rongyao Wang and Xiangdong Zhang, Amplification of Molecular Chiroptical Effect by Low-loss Dielectric Nanoantennas, Nanoscale 9, 5701 (2017).

¡¾4¡¿Tong Wu*, Weixuan Zhang, Rongyao Wang and Xiangdong Zhang, Giant chiroptical effect caused by the electric quadrupole, Nanoscale 9, 5110 (2017).

¡¾5¡¿Tian Chen, Bo Wang and Xiangdong Zhang, Controlling probability transfer in the discrete-time quantum walk by modulating the symmetries, New J. Phys. 19 (2017) 113049.

¡¾6¡¿Weixuan Zhang*, Tong Wu and Xiangdong Zhang, Tailoring Eigenmodes at Spectral Singularities in Graphene-based PT Systems, Sci. Rep. 7, 11407 (2017) .

¡¾7¡¿Jun Ren*, Tian Chen, Bo Wang, and Xiangdong Zhang, Ultrafast coherent energy transfer with high efficiency based on plasmonic nanostructures, J. Chem. Phys. 146, 144101 (2017).

¡¾8¡¿Tian Chen and Xiangdong Zhang, The defect-induced localization in many positions of the quantum random walk, Sci. Rep. 6, 25767 (2017).

¡¾9¡¿Tiecheng Wang* and Xiangdong Zhang, Improved third-order nonlinear effect in graphene based on bound states in the continuum, Photonics Research 5, 629-639 (2017).

¡¾10¡¿Xin-Bing Song, Shi-Yao Fu, Xiong Zhang, Zhen-Wei Yang, Qiang Zeng, Chunqing Gao and Xiangdong Zhang, Multimode quantum states with single photons carrying orbital angular momentum, Sci. Rep. 7, 3601 (2017).

¡¾11¡¿Bing Yang*, Tong Wu, and Xiangdong Zhang, Engineering topological edge states in two dimensional magnetic photonic crystal, Appl. Phys. Lett. 110, 021109 (2017).

¡¾12¡¿ Tao Li*, Qiang Zeng, Xinbing Song and Xiangdong Zhang, Experimental contextuality in classical light, Sci. Rep. 7, 44467 (2017).

¡¾13¡¿ Weixuan Zhang*, Tong Wu, Rongyao Wang, and Xiangdong Zhang, Surface-Enhanced Circular Dichroism of Oriented Chiral Molecules by Plasmonic Nanostructures, J. Phys. Chem. C, 121, 666-675 (2017).

¡¾14¡¿Tian Chen and Xiangdong Zhang, Extraordinary behaviors in a two-dimensional decoherent alternative quantum walk, Phys. Rev. A 94, 012316 (2016).

¡¾15¡¿ Z. T. Jiang, Z. T. Lv, and Xingdong Zhang, Energy spectrum of pristine and compressed black phosphorus in the presence of a magnetic field, Phys. Rev. B 94, 115118 (2016)

¡¾16¡¿Jun Ren*, Tong Wu, Bing Yang, and Xiangdong Zhang, Simultaneously giant enhancement of Forster resonance energy transfer rate and efficiency based on plasmonic excitations, Phys. Rev. B 94, 125416 (2016).

¡¾17¡¿Tong Wu*, Xiuhui Zhang, Rongyao Wang and Xiangdong Zhang, Strongly Enhanced Raman Optical Activity in Molecules by Magnetic Response of Nanoparticles, J. Phys. Chem. C 120, 14795−14804 (2016).

¡¾18¡¿Yifan Sun* and Xiangdong Zhang, Unusual quantum Talbot effect based on the orbital angular momentum of photons, Phys. Rev. A 93, 063851 (2016).

¡¾19¡¿Pengyun Li*, Bo Wang, and Xiangdong Zhang, High-dimensional encoding based on classical nonseparability, Optics Express 24, 264894 (2016).

¡¾20¡¿Qiang Zeng*, Tao Li, Xinbing Song, and Xiangdong Zhang, Realization of optimized quantum controlledlogic gate based on the orbital angular momentum of light, Optics Express 24, 257875 (2016).

¡¾21¡¿Pengyun Li*, Bo Wang, Xinbing Song and Xiangdong Zhang, Non-destructive identification of twisted light, Optics Letters 41, 1574 (2016).

¡¾22¡¿ Pengyun Li*, Yifan Sun, , Zhenwei Yang, Xinbing Song, and Xiangdong Zhang, Classical hypercorrelation and wave-optics analogy of quantum superdense coding, Sci. Rep. 5, 18574 (2015).

¡¾23¡¿Tiecheng Wang* and Xiangdong Zhang, Magnetic response at visible and near-infrared frequencies from black phosphorus sheet s, Optics Express 23, 30667 (2015).

¡¾24¡¿Tong Wu*, Rong-Yao Wang and Xiangdong Zhang, Plasmon-induced strong interaction between chiral molecules and orbital angular momentum of light, Sci. Rep. 5, 18003 (2015).

¡¾25¡¿Weixuan Zhang*, Jun Ren, and Xiangdong Zhang,Tunable superradiance and quantum phase gate based on graphene wrapped nanowire, Optics Express 23, 22347 (2015).

¡¾26¡¿Jun Ren*, Tong Wu, and Xiangdong Zhang, Multifrequency multi-qubit entanglement based on plasmonic hot spots, Sci. Rep. 5, 13941 (2015).

¡¾27¡¿ Wei Qin, Chuan Wang, Xiangdong Zhang, Protected quantum-state transfer in decoherence-free subspaces, Phys. Rev. A 91, 042303 (2015).

¡¾28¡¿Xinbing Song, Yifan Sun, Pengyun Li, Hongwei Qin, and Xiangdong Zhang, Bell's measure and implementing quantum Fourier transform with orbital angular momentum of classical light, Sci. Rep. 5, 14113 (2015).

¡¾29¡¿ Y. Sun*, X. Song, H. Qin, X. Zhang, Z. Yang, and Xiangdong Zhang, Non-local classical optical correlation and implementing analogy of quantum teleportation, Sci. Rep. 5, 9175 (2015).

¡¾30¡¿D. Zhai*, P. Wang, R-Y. Wang, X. Tian, Y. Ji, W. Zhao, L. Wang, H. Wei, X. Wu and Xiangdong Zhang, Plasmonic polymers with strong chiroptical response for sensing molecular chirality, Nanoscale 7, 10690 (2015).

¡¾31¡¿Mingda Zhang* and Xiangdong Zhang, Ultrasensitive optical absorption in graphene based on bound states in the continuum, Sci. Rep. 5, 8266 (2015).

¡¾32¡¿Tong Wu*, Jun Ren, Rongyao Wang and Xiangdong Zhang, Competition of Chiroptical Effect Caused by Nanostructure and Chiral Molecules, J. Phys. Chem. C 118, 20529−20537 (2014).

¡¾33¡¿ R-Y Wang, P. Wang, Y. Liu, W. Zhao, D. Zhai, X. Hong, Y. Ji, X. Wu, F. Wang, D. Zhang, W. Zhang, R. Liu and Xiangdong Zhang, Experimental Observation of Giant Chiroptical Amplification of Small Chiral Molecules by Gold Nanosphere Clusters, J. Phys. Chem. C 118, 9690 (2014).

¡¾34¡¿Yineng Liu*, Rongyao Wang and Xiangdong Zhang, Giant circular dichroism enhancement and chiroptical illusion in hybrid molecule-plasmonic nanostructures, Optics Express 22, 4357 (2014).

¡¾35¡¿Yifan Sun*, Ran Tao and Xiangdong Zhang, Fractional Fourier processing of quantum light, Optics Express 22, 728 (2014).

¡¾36¡¿Yineng Liu* and Xiangdong Zhang, Spin-based resonant effect and focusing lens of light by dielectric nanoparticles, Appl. Phys. Lett. 102, 141109 (2013).

¡¾37¡¿L.Y. Zhao*, C. S. Tian, Z. Q. Zhang and Xiangdong Zhang, Unconventional diffusion of light in strongly localized open absorbing media, Phys. Rev. B 88, 155104 (2013).

¡¾38¡¿ Yineng Liu* and Xiangdong Zhang, Spin-based second-harmonic generation by metal nanoparticles, Phys. Rev. A 88, 063810 (2013).

¡¾39¡¿Xin-Bing Song, D.Q. Xu, H.B. Wang, Jun Xiong, Xiangdong Zhang, D. Z. Cao, and Kaige Wang, Experimental observation of one-dimensional quantum holographic imaging, Appl. Phys. Lett. 103, 131111 (2013).

¡¾40¡¿Jinying Xu* and Xiangdong Zhang, Second harmonic generation in three-dimensional structures based on homogeneous centrosymmetric metallic spheres, Optics. Express 20 1668 (2012).

¡¾41¡¿Xin-Bing Song*, H-B Wang, J. Xiong, K. Wang, Xiangdong Zhang, K-H Luo, and L-A Wu£¬Experimental Observation of Quantum Talbot Effects, Phys. Rev. Lett. 107, 033902 (2011).

¡¾42¡¿Jinying Xu* and Xiangdong Zhang, Negative electron energy loss and secondharmonic emission of nonlinear nanoparticles, Optics. Express 19, 22999 (2011).

¡¾43¡¿Wei Zhong* and Xiangdong Zhang, Energy spectra for a photonic analog of multilayer grapheme, Phys. Rev. A 84, 033826 (2011).

¡¾44¡¿Wei Zhong* and Xiangdong Zhang, Dirac-cone photonic surface states in three-dimensional photonic crystal slab, Optics. Express 19, 23738 (2011).

¡¾45¡¿ Hailei Wang* and Xiangdong Zhang , Unusual spin Hall effect of a light beam in chiral metamaterials, Phys. Rev. A 83, 003800 (2011).

¡¾46¡¿Shu Gan*, Su-Heng Zhang*, Ting Zhao, Jun Xiong, Xiangdong Zhang, and Kaige Wang, Cloaking of a phase object in ghost imaging, Appl. Phys. Lett. 98, 111102 (2011).

¡¾47¡¿Shaozhi Wei*, Yunxia Dong*, Haibo Wang, and Xiangdong Zhang£¬ Enhancement of correlated photon-pair generation from a positive-negative index material heterostructure, Phys. Rev. A 81, 053830 (2010).

¡¾48¡¿Yunxia Dong* and Xiangdong Zhang, Possibility of efficient generation of multiphoton entangled states using a one-dimensional nonlinear photonic crystal, Phys. Rev. A 81, 033806 (2010).

¡¾49¡¿Xin-Bing Song*, Jun Xiong, Xiangdong Zhang, and Kaige Wang, Second-order Talbot self-imaging with pseudothermal light, Phys. Rev. A 82, 033823 (2010).

¡¾50¡¿ T. Zhai*, Y. Zhou, S. Chen, Z. Wang, J. Shi, Dahe Liu, and Xiangdong Zhang, Pulse-duration-dependent and temperature-tunable random lasing in a weakly scattering structure formed by speckles, Phys. Rev. A 82, 023824 (2010).

¡¾51¡¿Su-Heng Zhang*, Shu Gan*, Jun Xiong, Xiangdong Zhang, and Kaige Wang, Illusion optics in chaotic light, Phys. Rev. A 82, 021804(R) (2010).

¡¾52¡¿Wei Zhong* and Xiangdong Zhang, Localized modes in defect-free two-dimensional circular photonic crystals, Phys. Rev. A 81, 013805 (2010).

¡¾53¡¿Xiangdong Zhang, Negative refraction and abnormal transmission of electromagnetic wave in two-dimension photonic crystals, Materials Today 12, 44 (2009).

¡¾54¡¿Chunxu Bai*, Yanling Yang and Xiangdong Zhang, Effect of electron-electron interactions on the Klein paradox in graphene-based double-barrier structures, Phys. Rev. B. 80£¬235423 (2009).

¡¾55¡¿Su-Heng Zhang*, Shu Gan*, De-Zhong Cao, Jun Xiong, Xiangdong Zhang, and Kaige Wang, Phase-reversal diffraction in incoherent light, Phys. Rev. A 80, 031805(R) (2009).

¡¾56¡¿Xiangdong Zhang and Zhenyou Liu, Extremal transmission and beating effect of acoustic wave in two-dimensional sonic crystal, Phys. Rev. Lett. 101, 264303 (2008).

¡¾57¡¿ Xiangdong Zhang, Observing Zitterbewegung for photons near the Dirac point of a two-dimensional photonic crystal, Phys. Rev. Lett. 100, 113903 (2008).

¡¾58¡¿ Chunxu Bai*, Yanling Yang, and Xiangdong Zhang, Specular Andreev reflection and magnetoresistance in graphene-based ferromagnet-superconductor double junctions, Appl. Phys. Lett. 92, 102513 (2008).

¡¾59¡¿T. Zhai*, Z. Wang, R. Zhao, J. Zhou, D. Liu and Xiangdong Zhang, A Dnv point group structure possessing complete band gap based on gradual heterostructure and self-simulating sphere, Appl. Phys. Lett. 93, 201902 (2008).

¡¾60¡¿Yunxia Dong* and Xiangdong Zhang, Unusual entanglement transformation properties of the quantum radiation through one-dimensional random system containing left-handed-materials, Optics. Express 16, 16950 (2008).

¡¾61¡¿Jinying Xu*, Yunxia Dong*, and Xiangdong Zhang, Electromagnetic interactions between a fast electron beam and metamaterial cloaks, Phys. Rev. E 78, 046601 (2008).

¡¾62¡¿Xiangdong Zhang, Z.Y.. Li , B. Cheng and D-Z Zhang, Non-near-field focus and imaging of an unpolarized electromagnetic wave through high-symmetry quasicrystals, Optics. Express 15, 1292 (2007).

¡¾63¡¿Xiangdong Zhang, Universal non-near-field focus of acoustic waves through high-symmetry quasicrystals, Phys. Rev. B. 75 , 024209 (2007).

¡¾64¡¿T. Sun, Z. R. Qiu, H. M. Su, Xiangdong Zhang et. al., Dynamics of random laser and coherent backscattering of light from ZnO amplifying random medium, Appl. Phys. Lett. 88, 91, 241110 (2007).

¡¾65¡¿ Chunxu Bai* and Xiangdong Zhang, Klein paradox and resonant tunneling in a graphene superlattice, Phys. Rev. B. 76, 075430 (2007).

¡¾66¡¿Z. Ren*, Z. Wang, T. Zhai, H. Gao, D Liu and Xiangdong Zhang, Complex diamond lattice with wide band gaps in the visible range prepared by holography using a material with a low index of refraction, Phys. Rev. B. 76£¬035102 (2007).

¡¾67¡¿Xiangdong Zhang, Negative refraction of spintronics and spin beam splitter, Appl. Phys. Lett. 88, 052114 (2006).

¡¾68¡¿Z. Feng*, Xiangdong Zhang, et.al., Experimental demonstration of non-near-field image governed by negative refraction law, Phys. Rev. B. 73 £¬075118 (2006).

¡¾69¡¿ Jing Wang*, Xiangdong Zhang, Shou-Yong Pei and Da-He Liu, Tunable Casimir forces by means of the external magnetic field, Phys. Rev. A . 73£¬042103 (2006).

¡¾70¡¿ Z. Feng*, Xiangdong Zhang, et.al., Negative Refraction and Imaging by Twelve-Fold-Symmetry Quasicrystals, Phys. Rev. Lett. 94 , 247402 (2005).

¡¾71¡¿ Xiangdong Zhang, Acoustic resonant transmission through acoustic gratings with very narrow slits: Multiple-scattering numerical simulations, Phys. Rev. B 71£¬241102 (2005) (R).

¡¾72¡¿Xiangdong Zhang, Tunable non-near-field focus and imaging of unpolarized electromagnetic wave, Phys. Rev. B 71, 235103 (2005).

¡¾73¡¿Xiangdong Zhang, Effect of interface and disorder on the far-field image in a two-dimensional photonic-crystal-based flat lens, Phys. Rev. B 71, 165116 (2005).

¡¾74¡¿ C. Qiu*, Xiangdong Zhang and Z. Liu, Left-handed behavior and non-near-field imaging effect of acoustic wave in two-dimensional sonic crystal, Phys. Rev. B 71, 054302 (2005).

¡¾75¡¿ Xiangdong Zhang and Lie-Ming Li, Creating all-angle negative refraction by using insertion, Appl. Phys. Lett. 86 , 121103 (2005).

¡¾76¡¿Xiangdong Zhang,Subwavelength far-field resolution in a square two-dimensional photonic crystal, Phys. Rev. E 71, 037601(2005).

¡¾77¡¿Xiangdong Zhang, Image resolution depending on slab thickness and object distance in a two-dimensional photonic-crystal-based superlens, Phys. Rev. B 70, 195110(2004).

¡¾78¡¿ Xiangdong Zhang, Absolute negative refraction and imaging of unpolarized electromagnetic waves by two-dimensional photonic crystals, Phys. Rev. B 70, 205102(2004).

¡¾79¡¿S. K. Cheung*, Xiangdong Zhang, Z-Q Zhang et.al.: Impact of weak localization in the time domain, Phys. Rev. Lett. 92, 173902 (2004).

¡¾80¡¿Xiangdong Zhang and Z. Y. Liu: Negative refraction of acoustic waves in two-dimensional phononic crystals, Appl. Phys. Lett. 85, 341(2004).

¡¾81¡¿Qianjin Chu, Xiangdong Zhang, and Zhao-Qing Zhang, Calculation of enhanced scattering peaks in disordered thin slabs with internal reflections, Phys. Rev. B 70, 125110 (2004).

¡¾82¡¿K-C Kwan*, Xiangdong Zhang, Zhaoqing Zhang and C.T Chan: Effects due to disorder on photonic crystal-based waveguides, Appl. Phys. Lett. 82, 4414(2003).

¡¾83¡¿X.D. Liu, Xiangdong Zhang, Y.Q. Wang, B.Y. Cheng and D. Z. Zhang: Probing method for the density of states in a photonic crystal with luminescent molecules, Phys. Rev. B 68, 155118(2003).

¡¾84¡¿Zhifang Lin, Haiping Fang, Jianjun Xu, Jian Zi and Xiangdong Zhang,: Lattice Boltzmann model for photonic band gap materials, Phys. Rev. E 67, 025701(2003) (R).

¡¾85¡¿Ping Xie, Zhao-Qing Zhang and Xiangdong Zhang: Gap solitons and soliton trains in finite-sized two-dimensional periodic and quasiperiodic photonic crystals, Phys. Rev. E 63, 026607(2003).

¡¾86¡¿Xiangdong Zhang, Zhao-Qing Zhang: Wave transport through thin slabs of random media with internal reflection: Ballistic to diffusive transition, Phys. Rev. E 66, 016622(2002).

¡¾87¡¿Xiangdong Zhang, Zhao-Qing Zhang: Coherent backscattering of light in a strong localization regime, Phys. Rev. B 65, 155208(2002).

¡¾88¡¿ Xiangdong Zhang, Zhao-Qing Zhang: Non-Rayleigh distribution of reflected speckle intensities from localized states inside the gap of disordered photonic crystals, Phys. Rev. B 65, 245115(2002).

¡¾89¡¿ Xiangdong Zhang, Zhao-Qing Zhang and C.T. Chan: Absolute photonic band gaps in 12-fold symmetric photonic quasicrystals, Phys. Rev. B 63, 081105(2001) (R).

¡¾90¡¿Xiangdong Zhang, Lie-Ming Li, Zhao-Qing Zhang and C.T.Chan: The study of surface states in two-dimensional metallodielectric photonic crystals studied by a multiple-scattering method, Phys. Rev.B 63, 125114(2001).

¡¾91¡¿Yun Lai*, Xiangdong Zhang and Zhaoqing Zhang: Engineering acoustic band gaps, Appl. Phys. Lett. 79, 3224(2001).

¡¾92¡¿Zhi-Yuan Li, Xiangdong Zhang, and Zhao-Qing Zhang: Disordered photonic crystals understood by a perturbation formalism, Phys. Rev. B 61, 15738 (2000).

¡¾93¡¿ Xiangdong Zhang, Zhao-Qing Zhang, Lie-Ming Li, C.Jin, D. Zhang, B. Man, and B. Cheng: Enlarging a photonic band gap by using insertion, Phys. Rev. B 61, 1892(2000).

¡¾94¡¿ Xiangdong Zhang and Zhao-Qing Zhang: Creating a gap without symmetry breaking in two-dimensional photonic crystals, Phys. Rev.B 61, 9847(2000).

¡¾95¡¿C. Jin, B. Cheng, B. Man, D. Zhang, S. Ban, B Sun, Xiangdong Zhang, Zhaoqing Zhang: Two-dimensional metallodielectric photonic crystal with a large band gap, Appl. Phys. Lett. 75, 1201(1999).

¡¾96¡¿ Lie-Ming Li, Zhao-Qing Zhang, and Xiangdong Zhang: Transmission and absorption properties of two-dimensional metallic photonic-band-gap materials, Phys. Rev. B 58, 15589(1998).

¡¾97¡¿Xiangdong Zhang, Bozang Li, Wushou Zhang and Fu-Cho Pu: Magnetoresistance and exchange coupling in the ferromagnetic tunnel junction with ferromagnetic layers of finite thickness, Phys. Rev. B 57, 1090(1998).

¡¾98¡¿ Xiangdong Zhang, Bozang Li, Gang Sun and Fu-Cho Pu: Spin polarized tunneling and magnetoresistance in ferromagnet/insulator (semiconductor) single and double tunnel junctions subjected to an electric field, Phys. Rev. B 56, 5484(1997).

¡¾99¡¿Xiangdong Zhang, Bozang Li and Fu-Cho Pu: Magnetic Excitation in the Hubbard-Hirsch Model, Phys. Rev. B 54, 44 (1996).

¡¾100¡¿Xiangdong Zhang, Youcheng Li, Xiaojun Kong and Chengwen Wei: Effect of the image potential on the Stark shift of exciton states in a quantum Well, Phys. Rev. B 49, 10432 (1994).

Ïà¹Ø»°Ìâ/¹â×Ó ÎïÀí ʵÑé ¹¤×÷ ²ÄÁÏ

  • ÁìÏÞʱ´ó¶îÓÅ»Ýȯ,Ïí±¾Õ¾Õý°æöλÔÓéÀֵǼÈë¿ÚÏÂÔØöλÔÓéÀÖ¹Ù·½appÏÂÔØ!
    ´ó¶îÓÅ»Ýȯ
    ÓÅ»ÝȯÁìÈ¡ºó72СʱÄÚÓÐЧ£¬10ÍòÖÖ×îÐÂöλÔÓéÀֵǼÈë¿ÚÏÂÔØ¿¼Ö¤Ààµç×Ó´òÓ¡öλÔÓéÀÖ¹Ù·½appÏÂÔØÈÎÄãÑ¡¡£º­¸ÇÈ«¹ú500ÓàËùԺУöλÔÓéÀÖ¹Ù·½appÏÂÔØöλÔÓéÀֵǼÈë¿ÚÏÂÔØ¿Î¡¢200¶àÖÖÖ°Òµ×ʸñöλÔÓéÀֵǼÈë¿ÚÏÂÔØ¡¢1100¶àÖÖ¾­µä½Ì²Ä£¬²úÆ·ÀàÐͰüº¬µç×ÓÊé¡¢Ìâ¿â¡¢È«Ì×öλÔÓéÀÖ¹Ù·½appÏÂÔØÒÔ¼°ÊÓÆµ£¬ÎÞÂÛÄúÊÇöλÔÓéÀÖ¹Ù·½appÏÂÔØ¸´Ï°¡¢¿¼Ö¤Ë¢Ì⣬»¹ÊÇ¿¼Ç°³å´ÌµÈ£¬²»Í¬ÀàÐ͵IJúÆ·¿ÉÂú×ãÄúѧϰÉϵIJ»Í¬ÐèÇó¡£ ...
    öλÔÓéÀֵǼÈë¿ÚÏÂÔØÓÅ»Ýȯ ±¾Õ¾Ð¡±à FreeÒ¼°Û·ÖÑ§Ï°Íø 2022-09-19
  • ±±¾©Àí¹¤´óѧÎïÀíѧԺÑо¿Éúµ¼Ê¦£ºÊ·Çì·ª
    ±±ÀíÎïÀíѧԺÑо¿Éúµ¼Ê¦Ê·Çì·ª½éÉÜÈçÏ£ºÐÕÃû£ºÊ·Çì·ªËùÔÚѧ¿Æ£ºÎïÀíѧԺְ³Æ£ºÕý¸ß E-mail£ºqfshi123@bit.edu.cn¸öÈ˼òÀú1981Äê±ÏÒµÓÚÐìÖÝʦԺÎïÀíϵ²¢ÁôУÈÎְʵÑéÔ±¡£1989Äê±ÏÒµÓÚµç×Ó¿Æ´óÓ¦ÓÃÎïÀíÑо¿Ëù»ñ¹¤Ñ§Ë¶Ê¿Ñ§Î»£¬Ö®ºó¾ÍÖ°ÓÚÖйú¿ó´óÈν²Ê¦¡£1998Äê±ÏÒµÓÚÈÕ±¾¹úÁ¢¸Ôɽ´óѧ ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • ±±¾©Àí¹¤´óѧÎïÀíѧԺÑо¿Éúµ¼Ê¦£ºÉÛ±ò
    ±±¾©Àí¹¤´óѧÎïÀíѧԺÑо¿Éúµ¼Ê¦ÉÛ±ò½éÉÜÈçÏ£ºÐÕÃû£ºÉÛ±òËùÔÚѧ¿Æ£ºÎïÀíѧԺְ³Æ£ºÕý¸ß E-mail£ºsbin610@bit.edu.cn¸öÈ˼òÀú1979ÄêÖÁ1986ÄêÔÚ¼ªÁÖ´óѧÎïÀíϵѧϰ£¬·Ö±ð»ñѧʿºÍ˶ʿѧλ¡£2000Äê±±¾©Àí¹¤´óѧÔÚÖ°»ñµÃ²©Ê¿Ñ§Î»¡£¹¤×÷¾­Àú1995Äê½øÈë±±¾©Àí¹¤´óѧÎïÀíϵ¹¤×÷£¬Èθ±½Ì ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • ±±¾©Àí¹¤´óѧÎïÀíѧԺÑо¿Éúµ¼Ê¦£ºÒ¦Ô£¹ó
    ±±¾©Àí¹¤´óѧÎïÀíѧԺÑо¿Éúµ¼Ê¦Ò¦Ô£¹ó½éÉÜÈçÏ£ºÐÕÃû£ºProf. Yugui Yao Ò¦Ô£¹óËùÔÚѧ¿Æ£ºÎïÀíѧԺְ³Æ£º³¤½­ÌØÆ¸½ÌÊÚ¡¢½ÜÇà¡¢±±¾©´óѧÁ¿×Ó²ÄÁÏÖÐÐÄ¿Í×ù½ÌÊÚ ÁªÏµµç»°£º86-10-68918672E-mail£ºygyao@bit.edu.cn ͨÐŵØÖ·£º±±¾©º£µíÇøÖйشåÄÏ´ó½Ö5ºÅ ±±¾©Àí¹¤´óѧ ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • ±±¾©Àí¹¤´óѧÎïÀíѧԺÑо¿Éúµ¼Ê¦£º½­Õ×̶
    ±±ÀíÎïÀíѧԺÑо¿Éúµ¼Ê¦½­Õ×̶½éÉÜÈçÏ£ºÐÕÃû£º½­Õ×̶ËùÔÚѧ¿Æ£ºÎïÀíѧԺְ³Æ£ºÕý¸ß ÁªÏµµç»°£º010-68914027E-mail£ºjiangzhaotan@bit.edu.cnͨÐŵØÖ·£º¸öÈ˼òÀú1993-1997Äêɽ¶«Ê¦·¶´óѧ±¾¿Æ¡£1997-2000Äêɽ¶«Ê¦·¶´óѧ˶ʿ¡£2000-2003ÄêÖйú¿ÆÑ§Ôº°ë ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • ±±¾©Àí¹¤´óѧÎïÀíѧԺÑо¿Éúµ¼Ê¦£ºÎ¤ºÆ
    ±±ÀíÎïÀíѧԺÑо¿Éúµ¼Ê¦Î¤ºÆ½éÉÜÈçÏ£ºÐÕÃû£ºÎ¤ºÆËùÔÚѧ¿Æ£ºÎïÀíѧԺְ³Æ£ºÕý¸ßE-mail£ºhaowei@bit.edu.cn¸öÈ˼òÀú1993-1997ÄêÀ¼ÖÝ´óѧÎïÀíϵ£¬»ñѧʿѧλ£»1997-2000ÄêÀ¼ÖÝ´óѧÎïÀí¿ÆÑ§Óë¼¼ÊõѧԺ£¬»ñ˶ʿѧλ£»2000-2003ÄêÖйú¿ÆÑ§Ôº½ü´úÎïÀíÑо¿Ëù£¬ÖúÀíÑо¿Ô±£»20 ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • ±±¾©Àí¹¤´óѧÎïÀíѧԺÑо¿Éúµ¼Ê¦£º¸ðÄ«ÁÖ
    ±±ÀíÎïÀíѧԺÑо¿Éúµ¼Ê¦¸ðÄ«ÁÖ½éÉÜÈçÏ£ºÐÕÃû£º¸ðÄ«ÁÖËùÔÚѧ¿Æ£ºÎïÀíѧԺְ³Æ£ºÔºÊ¿ ˶ʿÉúµ¼Ê¦E-mail£ºgemolin@bit.edu.cn¸öÈ˼òÀú1965ÄêÀ¼ÖÝ´óѧÀíÂÛÎïÀíÑо¿Éú±ÏÒµ¡£ÏÖΪÄÏ¿ª´óѧ½ÌÊÚ£¬2011Äê¼æÈα±¾©Àí¹¤´óѧÎïÀíѧԺԺ³¤¡£¹¤×÷¾­ÀúÖйú¿ÆÑ§ÔºÊýÀíѧ²¿ÔºÊ¿£¬ÎïÀíÖÐȺÂÛ ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • Î人Àí¹¤´óѧ²ÄÁÏ¿ÆÑ§Ó빤³ÌѧԺÑо¿Éúµ¼Ê¦£º½ªºéÖÛ
    »ù±¾Çé¿ö:ÐÕÃû£º½ªºéÖÛ³öÉúÄêÔ£º1963Äê2ÔÂ15ºÅѧλ:²©Ê¿Ö°³Æ:¸±½ÌÊÚ¹¤×÷Ժϵ:²ÄÁÏѧԺÎÞ»ú·Ç½ðÊô²ÄÁϽÌÓý¾­Àú(´Ó´óѧ¿ªÊ¼)1978Äê9Ô 1982Äê7ÔÂ:ɽ¶«½¨Öþ²ÄÁϹ¤ÒµÑ§Ôº(ÏÖ¼ÃÄÏ´óѧ),±¾¿ÆÉú½×¶Îѧϰ1982Äê9Ô 1985Äê7ÔÂ:Î人½¨Öþ²ÄÁϹ¤ÒµÑ§Ôº(ÏÖÎä ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • Î人Àí¹¤´óѧ²ÄÁÏ¿ÆÑ§Ó빤³ÌѧԺÑо¿Éúµ¼Ê¦£º½ª´ÓÊ¢
    ½ª´ÓÊ¢£¬ÄУ¬½ÌÊÚ£¬Ë¶µ¼Ñо¿·½Ïò£ºÐÂÐͽ¨Öþ²ÄÁÏ ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • Î人Àí¹¤´óѧ²ÄÁÏ¿ÆÑ§Ó빤³ÌѧԺÑо¿Éúµ¼Ê¦£º»ÆÑ§»Ô
    Ò»¡¢ÐÕÃû£º»ÆÑ§»Ô¶þ¡¢»ù±¾Çé¿ö£º1¡¢³öÉúÄêÔ£º1962Äê10ÔÂ2¡¢Ñ§Î»£º¹¤Ñ§Ë¶Ê¿3¡¢Ö°³Æ£º½ÌÊÚ4¡¢¹¤×÷Ժϵ£º²ÄÁÏ¿ÆÑ§Ó빤³ÌѧԺ²ÄÁÏ¿ÆÑ§ÏµÈý¡¢½ÌÓý¾­Àú(´Ó´óѧ¿ªÊ¼)£º1980/091984/06£¬Î人½¨Öþ²ÄÁϹ¤ÒµÑ§Ôº£¬²ÄÁÏ¿ÆÑ§öλÔÓéÀֵǼÈë¿ÚÏÂÔØ£¬¹¤Ñ§Ñ§Ê¿1990/091994/06£¬Î人¹¤ ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • Î人Àí¹¤´óѧ²ÄÁÏ¿ÆÑ§Ó빤³ÌѧԺÑо¿Éúµ¼Ê¦£ººú½¨»ª
    ºú½¨»ª£¬²©Ê¿£¬¸±½ÌÊÚ£¬³öÉúÓÚ1966Äê1Ô£¬²ÄÁϳÉÐμ°¿ØÖƹ¤³Ìϵ½Ìʦ¡£½ÌÓý¾­Àú1986Äê±ÏÒµÓÚÉϺ£½»Í¨´óѧ½ðÊô²ÄÁϹ¤³ÌöλÔÓéÀֵǼÈë¿ÚÏÂÔØ£¬»ñ¹¤Ñ§Ñ§Ê¿Ñ§Î»¡£1991Äê±ÏÒµÓÚÎ人ˮÔ˹¤³ÌѧԺ´¬²°»úÐµÖÆÔìÓëÐÞÀíöλÔÓéÀֵǼÈë¿ÚÏÂÔØ£¬»ñ¹¤Ñ§Ë¶Ê¿Ñ§Î»¡£2003Äê±ÏÒµÓÚÎ人Àí¹¤´óÑ§ÔØÔ˹¤¾ßÔËÓù¤³ÌöλÔÓéÀֵǼÈë¿ÚÏÂÔØ£¬»ñ¹¤Ñ§²©Ê¿Ñ§Î»¡£¹¤×÷¾­Àú1986Äê7Ô ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • Î人Àí¹¤´óѧ²ÄÁÏ¿ÆÑ§Ó빤³ÌѧԺÑо¿Éúµ¼Ê¦£º»ÆÉÐÓî
    Ò»¡¢ÐÕÃû£º»ÆÉÐÓî¶þ¡¢»ù±¾Çé¿ö£º1¡¢³öÉúÄêÔ£º1963Äê10ÔÂ2¡¢Ñ§Î»£ºË¶Ê¿3¡¢Ö°³Æ£º½ÌÊÚ4¡¢¹¤×÷Ժϵ£º²ÄÁϳÉÐͼӹ¤ÏµÈý¡¢½ÌÓý¾­Àú(´Ó´óѧ¿ªÊ¼)£º2005/08-2006/09£¬¶íº¥¶íÖÝÁ¢´óѧ£¬²ÄÁϼӹ¤¹¤³Ì£¬·ÃÎʽÌÊÚ1996/02-1996/07£¬¹þ¶û±õ¹¤Òµ´óѧ£¬ËÜÐÔ¼Ó¹¤£¬ÔÚÖ°½øÐÞ1984/09-19 ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • ºþÄÏ´óѧ²ÄÁÏ¿ÆÑ§Ó빤³ÌѧԺÑо¿Éúµ¼Ê¦£º³Â¼ª»ª
    ºþÄÏ´óѧ²ÄÁÏ¿ÆÑ§Ó빤³ÌѧԺÑо¿Éúµ¼Ê¦³Â¼ª»ª½éÉÜÈçÏ£º³Â¼ª»ª£¬1976ÄêÉú£¬²©Ê¿£¬¸±½ÌÊÚ£¬²©Ê¿Éúµ¼Ê¦£¬Öйú²ÄÁÏÑо¿Ñ§»áÇàί»áÀíÊ¡£×Ô2001Äê4Ô¹¤×÷ÒÔÀ´£¬Ò»Ö±´ÓʸßÐÔÄÜþºÏ½ð¡¢ÂÁºÏ½ð¼°Æä¸´ºÏ²ÄÁϵÄÑо¿£¬Ö÷³Ö¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ð3Ï×÷ΪÖ÷ÒªÑо¿ÈËÔ±ÏȺó²Î¼Ó¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðÏîÄ¿4Ïî¡¢½ÌÓý²¿²©Ê¿µã»ù½ðÏîÄ¿£± ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
  • ºþÄÏ´óѧ²ÄÁÏ¿ÆÑ§Ó빤³ÌѧԺÑо¿Éúµ¼Ê¦£ºÅ·ÑôæÃ
    ºþÄÏ´óѧ²ÄÁÏ¿ÆÑ§Ó빤³ÌѧԺÑо¿Éúµ¼Ê¦Å·ÑôæÃ½éÉÜÈçÏ£ºÅ·ÑôæÃ£¬²©Ê¿£¬¸±½ÌÊÚ£¬Ñо¿Éúµ¼Ê¦¡£ÁªÏµ·½Ê½:oyt@hnu.edu.cnÑо¿·½Ïò: Á¤Çà»ùÌ¿ÏËάµÄÖÆ±¸Óë±íÕ÷¸ßÐÔÄܵ¼ÈÈÌ¿²ÄÁϼ°Æä¸´ºÏ²ÄÁϵÄÖÆ±¸Óë±íÕ÷»ù±¾ÐÅϢŷÑôæÃ£¬Å®£¬1983ÄêÉú¡£ºþÄÏ´óѧ£¬²ÄÁÏ¿ÆÑ§Ó빤³ÌѧԺ£¬¸±½ÌÊÚ£¬Ñо¿Éúµ¼Ê¦¡£ÁªÏµ·½Ê½:oyt ...
    ±¾Õ¾Ð¡±à Ãâ·ÑöλÔÓéÀÖ¹Ù·½appÏÂÔØÍø 2019-05-29
öλÔÓéÀÖ(xinhui)¹Ù·½ÍøÕ¾_öλÔÓéÀÖappÏÂÔØÈë¿Ú