Machine learning phases of an Abelian gauge theory

Author:

Peng Jhao-Hong1,Tseng Yuan-Heng2,Jiang Fu-Jiun2

Affiliation:

1. Department of Physics , Duke University, Box 90305, Durham, NC 27708, USA

2. Department of Physics, National Taiwan Normal University , 88, Sec.4, Ting-Chou Rd., Taipei 116, Taiwan

Abstract

Abstract The phase transition of the two-dimensional U(1) quantum link model on the triangular lattice is investigated by employing a supervised neural network (NN) consisting of only one input layer, one hidden layer of two neurons, and one output layer. No information on the studied model is used when the NN training is conducted. Instead, two artificially made configurations are considered as the training set. Interestingly, the obtained NN not only estimates the critical point accurately but also uncovers the physics correctly. The results presented here imply that a supervised NN, which has a very simple architecture and is trained without any input from the investigated model, can identify the targeted phase structure with high precision.

Funder

SCOAP

Publisher

Oxford University Press (OUP)

Subject

General Physics and Astronomy

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