activity
20022011
most citedCoexistence of superconductivity and magnetism in K0.8Fe2Se1.4S0.4

15 citations · 15 across the 1 of their papers we have counts for

collaborators

8 papers

cond-mat.supr-con2011★ 15 cited

Coexistence of superconductivity and magnetism in K0.8Fe2Se1.4S0.4

L. Li, Z. R. Yang, Z. T. Zhang +4

High-quality single crystals of K0.8Fe2Se1.4S0.4 are successfully synthesized by self-flux method with the superconducting transition temperatures Tconset = 32.8 K and Tczero = 31.…

cond-mat.str-el2009

The observation of a positive magnetoresistance and close correlation among lattice, spin and charge around TC in antipervoskite SnCMn3

B. S. Wang, P. Tong, Y. P. Sun +4

The temperature dependences of magnetization, electrical transport, and thermal transport properties of antiperovskite compound SnCMn3 have been investigated systematically. A posi…

q-bio.PE2004

The Spread of Infectious Disease with Household-Structure on the Complex Networks

Jingzhou Liu, Jinshan Wu, Z. R. Yang

In this paper we study the household-structure SIS epidemic spreading on general complex networks. The household structure gives us the way to distinguish inner and the outer infec…

q-bio.PE2004

The spread of disease with birth and death on networks

Jingzhou Liu

In this paper, we introduce a modified epidemic model on regular and scale-free networks respectively. We consider the birth rate , cure rate , infection rate , from t…

cond-mat.dis-nn2002

Dynamical Decimation Renormalization-Group Technique: Kinetic Gaussian Model on Non-Branching, Braching and Multi-branching Koch Curve

Jian-Yang Zhu, Z. R. Yang

A generalizing formulation of dynamical real-space renormalization that suits for arbitrary spin systems is suggested. The new version replaces the single-spin flipping Glauber dyn…

cond-mat.dis-nn2002

Solvable Kinetic Gaussian Model in External Field

Jian-Yang Zhu, Z. R. Yang

In this paper, the single-spin transition dynamics is used to investigate the kinetic Gaussian model in a periodic external field. We first derive the fundamental dynamic equations…