Help
HKU LOGIN
GUEST LOGIN
Home
ResearcherPages
Publications
Theses (HKUTO)
Browse by Thesis Degree
Browse by Thesis Discipline/Department
Browse by Thesis Title
Browse by Thesis Author
Grants
Browse by Grant Sponsor
Browse by Grant Panel
Browse by Grant Type
Patents
Community Service
繁
簡
Grant:
Quantum Order in Novel Materials: Superconductivity and Topological Order
Basic View
XML View
Project Title
Quantum Order in Novel Materials: Superconductivity and Topological Order
Principal Investigator
Wang, Zidan (Co-Investigator)
Co-Investigator(s)
Shen, Shunqing (Co-Investigator)
Zhang, Fuchun (Co-Investigator)
Professor Ng Tai Kai (Principal investigator)
Project Code
HKUST3/CRF/09
Funding Year
2009/2010
Amount
890000
Panel
Physical Sciences
Start Date
01-06-2010
Expected Completion
31-05-2013
Status
On-going
Keywords
theoretical, pnictide superconductors, topological insulators
Discipline
Physics, Materials Sciences
Sponsor
RGC Collaborative Research Fund (CRF)
Grant Type/Funding Scheme
Collaborative Research Fund (CRF) - Group Research Project
Duration
36
Publication
Pseudogap and Fermi-arc evolution in the phase-fluctuation scenario
Publication
Surface and edge states in topological semimetals
Publication
Orbital-transverse density-wave instabilities in iron-based superconductors
Publication
Quantum spin Hall effect induced by nonmagnetic and magnetic staggered potentials
Publication
Vacancy-induced bound states in topological insulators
Publication
Crossover from Majorana edge- to end-states in quasi-one-dimensional p-wave superconductors
Publication
Competition between weak localization and antilocalization in topological surface states
Publication
A phenomenological theory of the anomalous pseudogap phase in underdoped cuprates
Publication
Superconducting proximity effect on the block antiferromagnetism in K yFe 2-xSe 2
Publication
Weak localization of bulk channels in topological insulator thin films
Publication
Non-magnetic impurities and in-gap bound states in topological insulators
Publication
Field-induced p-wave superconducting state of mesoscopic systems
[Coming Soon]