visual
visual

세미나

  • HOME
  • >
  • 소식
  • >
  • 세미나

SWELLABLE COLLOIDAL PARTICLES ARE SWELL

2015.12.06 21:49

관리자 조회 수:12649

날짜 2015-12-09 14:00 
연사  
장소 E6-2, #1323 

SWELLABLE COLLOIDAL PARTICLES ARE SWELL


ABSTRACT
I will discuss soft matter experiments from my lab that explore fundamental questions about phase transition mechanisms and glasses. Briefly, soft materials deform easily when pushed, and some important examples include colloidal suspensions, emulsions, oil-water interfaces, polymer & surfactant solutions, liquid crystals, and mixtures thereof. Our recent work develops and takes advantage of a novel class of colloidal suspension composed of temperature-sensitive hydrogel particles; the temperature “knob” permits easy control of particle packing and simultaneous viewing by video microscopy [1]. These features, in turn, enable us to use colloidal crystals to answer fundamental questions about “how and where” crystal melting begins and about the mechanisms by which one crystal transforms to another during a solid-solid phase transition [2]. These features have also enabled us to critically explore open questions about disordered solids, e.g., how glasses rearrange internally when responding to mechanical stress [3]. After a broad introduction, I will describe these new experiments.
REFERENCES
[1] Yunker, P.J., Chen, K., Gratale, M.D., Lohr, M.A., Still, T., Yodh, A.G., Reports on
Progress in Physics 77, 056601 (Epub 2014).
[2] A.M. Alsayed, M.F. Islam, J. Zhang, P.J. Collings, A.G. Yodh, Science 309, 1207-1210 (2005); Y. Han, Y. Shokef, A. Alsayed, P. Yunker, T. C. Lubensky, A. G. Yodh, Nature 456,
898-903 (2008); Peng, Y., Wang, F., Wang, Z., Alsayed, A.M., Zhang, Z., Yodh, A.G., and
Han, Y., Nature Materials (Epub 2014).
[3] Chen, K., Ellenbroek, W.G., Zhang, Z.X., Chen, D.T.N., Yunker, P.J., Henkes, S., Brito, C., Dauchot, O., van Saarloos, W., Liu, A.J., and Yodh, A.G., Phys. Rev. Lett. 105, 025501 (2010); Chen, K., Manning, M.L., Yunker, P.J., Ellenbroek, W.G., Zhang, Z., Liu, A.J., and Yodh, A.G., Phys. Rev. Lett. 107, 108301 (2011); Still, T., Goodrich. C.P., Chen, K., Yunker, P.J., Schoenholz, S., Liu, A.J., and Yodh, A.G., Phys. Rev. E 89, (2014).

번호 날짜 연사 제목
공지 2025-09-01 12:00    2025년 가을학기 콜로키움
공지 2025-09-05 11:00    2025년 가을학기 물리학과 특별세미나 (광학/응집물리 분야)
395 2019-09-27 14:30    Spin-charge conversion in topological insulators for spintronic applications file
394 2019-09-27 16:00    0D/1D/2D/3D III-V materials grown by MBE for Optelectronics file
393 2019-10-15 16:00    Moiré superlattices and graphene quasicrystal file
392 2019-10-16 16:00    Emergent black holes and monopoles from quantum fields file
391 2019-10-17 16:00    Top down manipulation of Waves : From Metamaterials, Correlated Disorder, Quantum Analogy, to Digital Processing file
390 2019-10-25 15:00    Physics Seminar file
389 2019-10-29 10:00    Unconventional Spin Transport in Quantum Materials file
388 2019-10-29 14:30    Quantum sensing file
387 2019-10-29 16:00    Particles and Gravity via String Geometry file
386 2019-10-31 10:00    Kondo meets Hubbard: Impurity physics for correlated lattices file
385 2019-11-01 14:30    Squeezing the best out of 2D materials file
384 2019-11-01 16:00    Electron transport through weak-bonded contact metal with low dimensional nano-material file
383 2019-11-05 16:00    Study on nanomaterials by the development of ultrahigh resolution laser-photoelectron microscopy (PEEM) file
382 2019-11-07 16:00    Integrated quantum photonics with solid-state quantum emitters file
381 2019-11-14 16:00    Semi-classical model of polariton propagation file
380 2019-11-20 16:00    Correlation between superconducting transition temperature and critical current density in irradiated iron-based superconductors file
379 2019-11-28 16:00    Generation of coherent EUV emissions using ultrashort laser pulses file
378 2019-12-03 16:00    Toward Quantum Materials with Correlated Oxides file
377 2019-12-05 16:00    Subwavelenth Photonic Devices: From Single Photon Sources to Solar Cell file
376 2019-12-13 13:00    Computational Material Designs: Current Status and Future Directions file