from    
to    
search  

 


人工智能拓展火灾安全研究的进展
From The Sky To The Sea
清华大学材料科学与工程研究院《材料科学论坛》:基于拓扑缺陷理论的轻合金组织设计新...
Quantum information processing based on bosonic modes
报告题目:
Correlation Decay up to Uniqueness in Spin Systems
 报告人:
Dr. Pinyan Lu
Microsoft Research Asia
报告时间:
2012-12-12 15:15
报告地点:
Conference Hall 322, Science Building, Tsinghua University
主办单位:
高等研究院
  简介:
We give a complete characterization of the two-state anti-ferromagnetic spin systems which are of strong spatial mixing on general graphs. We show that a two-state anti-ferromagnetic spin system is of strong spatial mixing on all graphs of maximum degree at most \Delta if and only if the system has a unique Gibbs measure on infinite regular trees of degree up to \Delta, where \Delta can be either bounded or unbounded. As a consequence, there exists an FPTAS for the partition function of a two-state antiferromagnetic spin system on graphs of maximum degree at most \Delta when the uniqueness condition is satisfied on infinite regular trees of degree up to \Delta. In particular, an FPTAS exists for arbitrary graphs if the uniqueness is satisfied on all infinite regular trees. This covers as special cases all previous algorithmic results for two-state anti-ferromagnetic systems on general-structure graphs.
Combining with the FPRAS for two-state ferromagnetic spin systems of Jerrum-Sinclair and Goldberg-Jerrum-Paterson, and the very recent hardness results of Sly-Sun,  this gives a complete classification, except at the phase transition boundary, of the approximability of all two-state spin systems, on either degree-bounded families of graphs or family of all graphs.
This is a joint work with Liang Li and Yitong Yin.
Bio: Dr. Pinyan Lu is a Lead Researcher at Theory Group of Microsoft Research Asia. He is also a Chair Professor at Shanghai Jiao Tong University. He studied in Tsinghua University (BS (2005) and PhD (2009) both in Computer Science). He is interested in theoretical computer science, including complexity theory, algorithms design and algorithmic game theory. Currently, his research is mainly focus on complexity and approximability of counting problems, and algorithmic mechanism design. He has received various awards, including the Best Paper Award in ICALP 2007, FAW 2010, ISAAC 2010 and so on. http://research.microsoft.com/en-us/people/pinyanl/
今日相关信息
云计算及软件工业的商业模型(高水平英文课...
Physical effects of im...
Molecular Imaging Probes for Cancer R...
清华大学清洁能源讲坛系列学术报告(七):...
清华环境论坛第39讲:Co-benefit, co-con...
 
同类别相关信息
公共卫生系列讲座:膳食类胡萝卜素与老年...
AIR学术沙龙第3期|从自动驾驶到智能交...
2020清华国家形象论坛——人类命运共同...
迷失与归潜-但丁《神曲》解读
国有企业党的建设工作研讨会----暨习近...
学术活动