研究方向
本研究組的主要研究興趣是基于同步輻射技術(shù)為主要實(shí)驗(yàn)手段的實(shí)驗(yàn)軟凝聚態(tài)物理和同步輻射應(yīng)用。幾個(gè)主要的研究?jī)?nèi)容包括非平衡態(tài)統(tǒng)計(jì)物理,軟物質(zhì)體系包括顆粒物質(zhì)和膠體的從宏觀到微觀尺度的結(jié)構(gòu)和動(dòng)力學(xué)過(guò)程。同時(shí)將X射線成像技術(shù)應(yīng)用于流體,材料及生物醫(yī)學(xué)影像。
人物經(jīng)歷
1995年清華大學(xué)物理系獲學(xué)士學(xué)位。2001年在麻省理工學(xué)院師從Prof. Birgeneau 獲得物理學(xué)博士學(xué)位。博士畢業(yè)后在美國(guó)阿貢國(guó)家實(shí)驗(yàn)室從事博士后和助理研究員研究。2009年9月被上海交通大學(xué)物理系聘為研究員。 近年來(lái)主要從事同步輻射醫(yī)學(xué)影像和軟物質(zhì)物理研究。
著述成果
Structural Critical Scattering study of Mg-Doped CuGeO3Y.J.Wang, V.Kiryukhin, R.J.Birgeneau, T.Masuda, I.Tsukada and K. Uchinokura, Phys. Rev. Lett. 83, 1676 (1999).Reentrant Spin-Peierls Transition in Mg-Doped CuGeO3V. Kiryukhin, Y.J.Wang, S.C. LaMarra, R.J.Birgeneau, T.Masuda, I.Tsukada, K.Uchinokura, Phys. Rev. B 61, 9527 (2000).Hard X-ray Quantitative Phase Contrast Imaging of Air Assisted Water SprayY.J. Wang, K. Fezzaa, J. Wang, K-S Im, W.K. Lee, K. Fezzaa, W.K. Lee, and J. Wang, Appl. Phys. Lett. 89, 151913 (2006).A Sagittally Focusing Double-Multilayer Monochromator for Ultrafast X-ray Imaging ApplicationsY.J. Wang, S. Narayanan, D.M. Shu, A. Mashayekhi, J. Qian, J.Y. Liu, and J. Wang, Journal of Synchrotron Radiation 14, 138 (2007).Ultrafast Synchrotron X-ray Imaging of High-Speed Liquid Jet BreakupY.J. Wang, X. Liu, K.-S. Im, W.-K. Lee, J. Wang, F. Kamel, L.S. Hung, J.R. Winkelman, Nature Physics 4, 306 (2008).Similarity between primary and secondary liquid jet breakup mechanismY.J. Wang, K.-S. Im, K. Fezzaa, Phys. Rev. Lett 100, 154502 (2008).Ultrafast X-ray Phase-Contrast Imaging of the Droplets Coalescence ProcessK. Fezzaa, Y.J. Wang*,Phys. Rev. Lett 100, 104501 (2008).X-ray microtomography study of compaction process of rods under tapping, Y. Fu, Y. Xi, Y.X. Cao, Y.J. Wang*, Phys. Rev. E 85, 051311 (2012).X-ray grating interferometer for biological imaging applications at Shanghai Synchrotron Radiation Facility Y. Xi, B.Q. Kou, S.H. Sun, J.C. Qi, J.Q. Sun, J. Mohr, M. Borner, J. Zhao, L.X. Xu, T.Q. Xiao, Y.J. Wang*, Journal of Synchrotron Radiation 19, 821 (2012).A dynamic synchrotron X-ray imaging study of the effective temperature in a vibrated granular medium, Y.X. Cao, X.D. Zhang, B.Q. Kou, X.T. Li, X.H. Xiao, K. Fezzaa,?Y.J. Wang*, Soft Matter 10,5398 (2014).X-ray tomography study of the random packing structure of ellipsoids, C.J. Xia, K. Zhu, Y.X. Cao, H.H. Sun, B.Q. Kou, Y.J. Wang*, Soft Matter 10, 990 (2014).Similarity of wet granular packings to gels, J.D. Li, Y.X. Cao, C.J. Xia, B.Q. Kou, X.H. Xiao, K. Fezzaa, Y.J. Wang*, Nature Communications 5, 5014 (2014).Grating-based phase-contrast imaging of tumor angiogenesis in lung metastasis, H.M. Lin, B.Q. Kou, X.T. Li, Y. J. Wang*, B. Ding, C. Shi, H.H. Liu, R.B. Tang, J.Q. Sun, F.H. Yan, H. Zhang*, Plos One 10, e0121438 (2015).In-line phase-contrast and grating-based phase contrast synchrotron imaging study of brain micrometastasis of breast cancer, S. Huang, B.Q. Kou, Y.Y. Chi, Y. Xi, Y.X. Cao, W.L. Cui, X. Hu, Z.M. ZHao, H. Guo, Y.N. Fu, T.Q. Xiao, J.Q. Sun, J. Zhao, Y.J. Wang*, J. Wu*, Scientific Reports 5, 9418 (2015).The structural origin of the hard-sphere glass transition in granular packing, C.J. Xia, J.D. Li, Y.X. Cao, B.Q. Kou, X.H. Xiao, K. Fezzaa, T.Q. Xiao, Y.J. Wang*, Nature Communications 6, 8409 (2015).?
