Literature DB >> 30253474

Replica symmetry breaking in bipartite spin glasses and neural networks.

Gavin S Hartnett1,2, Edward Parker3, Edward Geist1.   

Abstract

Some interesting recent advances in the theoretical understanding of neural networks have been informed by results from the physics of disordered many-body systems. Motivated by these findings, this work uses the replica technique to study the mathematically tractable bipartite Sherrington-Kirkpatrick (SK) spin-glass model, which is formally similar to a restricted Boltzmann machine (RBM) neural network. The bipartite SK model has been previously studied assuming replica symmetry; here this assumption is relaxed and a replica symmetry breaking analysis is performed. The bipartite SK model is found to have many features in common with Parisi's solution of the original, unipartite SK model, including the existence of a multitude of pure states which are related in a hierarchical, ultrametric fashion. As an application of this analysis, the optimal cost for a graph partitioning problem is shown to be simply related to the ground state energy of the bipartite SK model. As a second application, empirical investigations reveal that the Gibbs sampled outputs of an RBM trained on the MNIST data set are more ultrametrically distributed than the input data themselves.

Entities:  

Year:  2018        PMID: 30253474     DOI: 10.1103/PhysRevE.98.022116

Source DB:  PubMed          Journal:  Phys Rev E        ISSN: 2470-0045            Impact factor:   2.529


  1 in total

1.  Perovskite neural trees.

Authors:  Hai-Tian Zhang; Tae Joon Park; Ivan A Zaluzhnyy; Qi Wang; Shakti Nagnath Wadekar; Sukriti Manna; Robert Andrawis; Peter O Sprau; Yifei Sun; Zhen Zhang; Chengzi Huang; Hua Zhou; Zhan Zhang; Badri Narayanan; Gopalakrishnan Srinivasan; Nelson Hua; Evgeny Nazaretski; Xiaojing Huang; Hanfei Yan; Mingyuan Ge; Yong S Chu; Mathew J Cherukara; Martin V Holt; Muthu Krishnamurthy; Oleg G Shpyrko; Subramanian K R S Sankaranarayanan; Alex Frano; Kaushik Roy; Shriram Ramanathan
Journal:  Nat Commun       Date:  2020-05-07       Impact factor: 14.919

  1 in total

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