Physics progress in u niversity of s cience and t echnology of c hina
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Physics Progress in U niversity of S cience and T echnology of C hina. Report outline. Research Area Faculty Achievements Research Highlights. Research Area. Physics in USTC has four main fields of specialties:. Broad spectrum of research sub-areas. Optics Condensed matter physics

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Physics progress in u niversity of s cience and t echnology of c hina

Physics Progress inUniversity of Science and Technology of China


Report outline

Report outline

  • Research Area

  • Faculty

  • Achievements

  • Research Highlights


Research area

Research Area

Physics in USTC has four main fields of specialties:


Physics progress in u niversity of s cience and t echnology of c hina

Broad spectrum of research sub-areas

Optics

Condensed matter physics

Theoretical physics

Particle physics and nuclear physics

Plasma physics

Atomic and molecular physics

Astrophysics

Physical electronics

Microelectronics

Optical Engineering


Physics progress in u niversity of s cience and t echnology of c hina

Key Laboratories in [email protected]

4 Key Lab. CAS

2 Key Lab. Anhui

Quantum

information

The Photo-Electro

Laboratory

Plasma physics

The Physical Electronics

Laboratory

Nuclear Detector&

Electronics

Galaxies and

Cosmology


Hefei national laboratory for physical sciences at the microscale

Hefei national laboratory for physical sciences at the microscale

  • Nano-materials and Nano-chemistry

  • Division of Atomic and Molecular Sciences

  • Quantum Physics and Quantum Information

  • Low-dimensional Physics and Chemistry

  • Structure and Function of Biomacromolecule

  • Bio-X interdisciplinary Science

  • International centre for quantum design of functional materials


National synchrotron radiation laboratory

National Synchrotron Radiation Laboratory


Faculty

Faculty

School of Physical Sciences have 230 members of faculty and staff, 82 professors , 65 associate professors, including 8 academicians of CAS , 2 national excellent teacher, 3 members of National Thousands Program, 5 members of Cheung Kong Scholars Programme,18 members supported by the National Foundation for Distinguished Youths, and 23 members supported by CAS Hundred Talents Programme.


Our aps

Our APS

American Physical Society (APS) of 2009 has announced the newly elected APS Fellows, and 15 from Chinese mainland, among whom 4 from USTC.  So far the total number of USTC alumni elected APS Fellow has reached 22, tied for first place with Peking University.


Achievements

Achievements

  • International significant annual progress on physics

  • Top ten major news on basic scientific research of the National Department of Science and Technology

  • Top ten scientific and technological progress of Chinese Universities.

  • 3 second prize of The National Natural Science

  • 4 first prize of Anhui Natural Science

  • 3 second prize of Anhui Natural Science

  • 3 first prize of Scientific and technological progress of Higher Education Institutions in Anhui Province.


Top 10 progress on international physics

Top 10 progress on international physics

2004 By EPS

2004 By APS

Five-photon Entanglement and Open-destination Teleportation

2006 By EPS

Remote cloning based on Single-photon Quantum State

2008 By Science

Iron-based superconducting materials

2008 By EPS

Experimental Implementation of Quantum Repeater


Top 10 science progress selected by academicians china

Top 10 science progress Selected by Academicians (China)


Physics progress in u niversity of s cience and t echnology of c hina

Top 10 annual progress of Chinese university Selected by MOE

  • 2008

  • Discovery and Research on the phase diagram

  • of Iron-based superconducting materials

  • 2007

  • Physical implementation and Research on

  • Quantum Computer

  • 2004

  • Experiment on Five-photon Entanglement and

  • variable-destination Teleportation

  • 2003

  • Manipulate and Discern of Multi-photon Quantum

  • Entangled State

  • 2001

  • High resolution of C60 single-molecule and novel

  • two dimensional domains


Physics progress in u niversity of s cience and t echnology of c hina

Top 10 news on basic scientific research selected by MOST&CAST

  • 2008 Top ten news on basic scientific research

  • Major progress on Iron-based

  • superconducting materials research

  • 2007 Top ten news on basic scientific research

  • New progress on Multi-photon Entanglement

  • and Quantum Computation

  • 2008 Top ten news on basic scientific research

  • Successful Implementation of stable Quantum

  • Key Distribution in optical fiber transmission


Physics progress in u niversity of s cience and t echnology of c hina

National Awards in Sci.& Tech

  • Second prize of The National Natural Science Award (2003)

  • Basic research of Quantum information technology

  • Second prize of The National Natural Science Award (2005)

  • Simultaneously characterize single-molecule Electronic States in position space and energy space

  • Second prize of The National Natural Science Award (2009)

  • Study on electrical and magnetic behavior of the transitional metal oxides (chalcogenides)


Physics progress in u niversity of s cience and t echnology of c hina

Research Paper

Since the year 2000, USTC has published about 600 papers as first author every year, over 500 indexed by SCI/EI. Physics papers published in journals of high impact factor are in the leading position among national universities . From 2002 to 2008, 308 papers published in Phys.Rev.Lett, 79 as first author. The data for 2009 is 52/12.


Physics progress in u niversity of s cience and t echnology of c hina

High-level Papers


Sci physics paper published by ustc 1999 1 1 2009 4 30 esi

SCI Physics paper published by USTC(1999.1.1--- 2009.4.30; ESI)


2002 2008 ustc papers contribution to pr web of sci total not first auther

2002-2008 USTC papers contribution to PR.(Web of Sci., total , not first auther)


2002 2008 ustc papers contribution to europe physics magazine web of sci total not first auther

2002-2008 USTC papers contribution to Europe Physics Magazine.(Web of Sci., total , not first auther)

Rank of USTC papers in J.Phys(2002-2008)

Rank of USTC papers in Phys Lett.(2002-2008)


Breakthrough in iron based high temperature superconductors

Breakthrough in iron-based high temperature superconductors

Research Highlights

  • Science Now Daily News, Nature chemistry,

    Search and Discovery, Asia Materials and

    Nature china report the results;

  • Top 10 Scientific Breakthroughs of the world of 2008;

  • Top 10 Scientific Breakthroughs of the

    Science Magazine of 2008 ;

  • Top 10 Scientific Breakthroughs of China of 2008;

  • Top 10 Scientific Breakthroughs of Universities

    of China of 2008;

  • Hot Papers in Physics last 2 years (Rank 2);

  • The Red-Hot Research papers of 2008 (Rank 5);

  • Physics Top 10 Papers in Science Watch (Rank 8).

On 25 March, X.H. Chen reported firstly that SmO0.85F0.15FeAs goes

superconducting at 43 Kelvin

Nature, 2008


Physics progress in u niversity of s cience and t echnology of c hina

A large iron isotope effect

  • A large iron isotope effect observed in pnictide superconductors gives insights into the origin of high-temperature superconductivity.

  • The result indicates that the interplay between phonons and magnons will be the key to understanding high-temperature superconductivity.

PRL 2008; Nature, PRL 2009;


Molecular electronics at the level of single molecule

Molecular Electronics at the level of single-molecule

Controlling magnetic properties of single CoPc molecules

The localized spin was recovered through single molecular chemistry, showing clear Kondo resonance near the Fermi surface.

Comments:

A.D. Zhao et al., Science 309, 1542 (2005)

  • In website of American Chemistry Society:Modulate magnetism in a single molecule by using “molecular surgery”.

Manipulation of CoPc on Au (111)

  • Perspective in Science:Controllingspin at the single-molecule scale in these and related systems promises a new level of control in magnetic nanostructures.


Molecular electronics at the level of single molecule1

Molecular Electronics at the level of single-molecule

Functionalization of single molecules

Dopping single C60 molecules

Dual Functions in single modified Malemine Molecules

NDR effect through orbital symmetry matching

Molecular rectifier with single C59N molecule

Functionalizaion of single molecules on solid surfaces by designing specific molecular structures; modification of electronic states through “doping” single molecules; and manipulation or cutting molecules at the level of single molecules.

PNAS, 2009

Phys.Rev.Lett., 2005,2007


Nanoplasmonics and nanophotonics

Nanoplasmonics and Nanophotonics

How optical information is generated, switched, amplified, and detected at the nanoscale?

Nanocavity plasmons are exploited as a coherent optical source with tunable energy and

to actively control the radiative channels of molecules via resonant plasmon-exciton coupling.

New optoelectronic effects:

Hot electroluminescence

Upconversion electroluminescence

Dramatic spectral shaping

Referees:“The findings of the authors go far beyond everything what has been published so far…”

“very interesting news and important for a wide field of researchers in photonics…”

Nature Photonics,2010


Physics progress in u niversity of s cience and t echnology of c hina

Quantum Teleportation of Composite System and Six-bit Schrödinger Cat State

Realization of quantum teleportation of a two-qubit composite system for the first time. Enable future experimental investigations on novel quantum communication and computation protocols

Experimental entanglement of six photons and engineering of multiqubit graph states. Could open the way to experimental tests of quantum algorithms or loss- and fault-tolerant oneway quantum computation

Experimental entanglement of six photons and engineering of multiqubit graph states. Could open the way to experimental tests of quantum algorithms or loss- and fault-tolerant oneway quantum computation

Experimental entanglement of six photons and engineering of multiqubit graph states. Could open the way to experimental tests of quantum algorithms or loss- and fault-tolerant oneway quantum computation

  • Chinese Top-ten Science and Technology Progress of 2006

  • International Important Physics Progress of 2006

  • Chinese Top-ten Science and Technology Progress of 2007

  • Chinese Universities’ Top-ten Science and Technology

    Progress of 2007

Nature Physics, 2, 678 (2006)

Nature Physics, 3, 91 (2007)


Physics progress in u niversity of s cience and t echnology of c hina

Quantum Repeater based on Quantum Storage of Cold Atoms

Nature 454, 1098 (2008)

  • Realization of entanglement swapping with storage and retrieval of light, a building block of the quantum repeater for the first time.

  • Entanglement is stored in the atomic ensembles through a 300-m fiber-based communication channel and later verified by converting the atomic excitations into photons.

  • Intrinsically phase insensitive and establishes the essential element needed to realize quantum repeaters with stationary atomic qubits as quantum memories and flying photonic qubits as quantum messengers.

  • Chinese Top-ten Science and Technology Progress

    of 2008

  • Chinese Top-ten Science and Technology News of

    2008

  • Best of 2008, EPS

  • Nature praised it for “removing a huge stumbling block in quantum communications” in the news release “Quantum Boost”


Physics progress in u niversity of s cience and t echnology of c hina

Quantum Telephone Network

Opt. Express 17, 6540 (2009)

The world’s first quantum cryptography network for telephony is able to send telephone messages between three nodes connected in a chain by two 20 km-long commercial fibre-optic cables.

Editors’ Choice, Science Magazine

News & Analysis, Physics World


Preserving electron spin coherence in solids by optimal dynamical decoupling

Preserving electron spin coherence in solids by optimal dynamical decoupling

Using a 7-pulse optimal DD sequence, we prolonged the spin coherence time to 31µs, which would otherwise be about 0.04us without control or 6.5us under one-pulse control. [J.F. Du et.al., Nature 461, 1265 (2009)]


Quantum computation

Quantum Computation

Experimental Study of the Validity of Quantitative Conditions in the Quantum Adiabatic Theorem[J.F. Du et.al., PRL 101, 060403 (2008)]

Experimental Implementation of Quantum Adiabatic Algorithm for Factorization [X.H. Peng et.al., PRL 101, 220405 (2008)]


Thank you

Thank you


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