胡小永
Professor

Gender:Male

Alma Mater:Institute of Physics, Chinese Academy of Sciences

Education Level:Postgraduate (Doctoral)

[MORE] Academic Honor:

2010  Participant of the Program for New Century Excellent Talents of Ministry of Education of China ;

2012  Winner of National Science Fund for Distinguished Young Scholars ;

2015  Changjiang Distinguished Professor ;

2017  Millions of people plan to lead

Honors and Titles:

2007-01-01  Second prize of Rao Yutai basic optics award

2010-01-01  Participant of the Program for New Century Excellent Talents of Ministry of Education of China

2010-01-01  Wang Xuan Young Scholar Fellowship

2011-01-01  The second prize of National Natural Science Award (ranked second)

2012-01-01  Winner of National Science Fund for Distinguished Young Scholars

2015-01-01  Changjiang Distinguished Professor

2016-01-01  Innovation talent promotion program (young and middle-aged science and technology innovation leading talents)

2017-01-01  The third batch of national "wanrenjihua" leading talents in science and technology innovation

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Mesoscopic optics and nanophotonics

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We focus on the research of nanoscale integrated photonic devices and information processing chips through combining the advantages of photonic crystals and plasmonics.


1. Novel third-order nonlinear photonic materials

    (1) Broadband Epsilon-near-zero materials and applications

    (2) Ultrafast electron relaxation dynamics in two-dimensional materials, oxide heterostructure, and organic inorganic hybrid perovskite were measured by use of ultrahigh spatiotemporal resolution photon emission electron microscope

  

2. Non-Hermitian topological photonics

    (1) Study of novel physics of Non-Hermitian topological photonics.


3. Integrated photonic chip and applications

    (1) Von-Neumann configuration photonic chips. Study of realization of single-chip integration of various nanoscale photonic devices to perform complex logic operation functions.

    (2) Topological photonic chips. Study of reconfigurable topological photonics, and realization of quantum topological photonic chips.

    (3) Optical neural network chips. Study of realization of novel computing functions.


4. Quantun entanglement and quantum simulation.

    (1) Study of high-dimensional and multipartite physics questions.


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