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A lattice approach to spinorial quantum gravityA new lattice regularization of quantum general relativity based on Ashtekar's reformulation of Hamiltonian general relativity is presented. In this form, quantum states of the gravitational field are represented within the physical Hilbert space of a Kogut-Susskind lattice gauge theory. The gauge field of the theory is a complexified SU(2) connection which is the gravitational connection for left-handed spinor fields. The physical states of the gravitational field are those which are annihilated by additional constraints which correspond to the four constraints of general relativity. Lattice versions of these constraints are constructed. Those corresponding to the three-dimensional diffeomorphism generators move states associated with Wilson loops around on the lattice. The lattice Hamiltonian constraint has a simple form, and a correspondingly simple interpretation: it is an operator which cuts and joins Wilson loops at points of intersection.
Document ID
19890056219
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Renteln, Paul
(Harvard University Cambridge, MA; California, University, Santa Barbara, United States)
Smolin, Lee
(Yale University New Haven, CT; California, University, Santa Barbara, United States)
Date Acquired
August 14, 2013
Publication Date
March 1, 1989
Publication Information
Publication: Classical and Quantum Gravity
Volume: 6
ISSN: 0264-9381
Subject Category
Physics (General)
Accession Number
89A43590
Funding Number(s)
CONTRACT_GRANT: NSF PHY-82-15249
CONTRACT_GRANT: DE-FG03-84ER-40168
CONTRACT_GRANT: NSF PHY-82-17853
CONTRACT_GRANT: NSF PHY-85-03072
Distribution Limits
Public
Copyright
Other

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