We extend an existing Bose-Fermi equivalence formula to two-dimensional Euclidean space-times with arbitrary compact topology. The result relates the nonchiral Dirac partition function to that of a scalar field, times a theta function. The proof is a short application of methods from complex geometry and Quillen\u27s determinant constructions
We study bosonization in 2+1 dimensions using mirror symmetry, a duality that relates pairs of super...
Effective field theory is a very useful technique for understanding quantum many body systems. We us...
Abstract Quantum Field Theory formulated in terms of hermitian fields automatically leads to a spin-...
We extend an existing Bose-Fermi equivalence formula to two-dimensional Euclidean space-times with a...
We prove the equivalence between certain fermionic and bosonic theories in two spacetime dimensions....
This talk describes some work done jointly with L. Alvarez-Gaume, J.B. Bost, G. Moore, and C. Vafa [...
We present a path-integral bosonization approach for systems out of equilibrium based on a duality t...
The equivalence is proved between fermionic and scalar field theories on Riemann surfaces of arbitra...
Abstract Massless excitations at the surface of three-dimensional time-reversal invariant topologica...
We develop a new method for bosonizing the Fermi surface based on the formalism of the coadjoint orb...
The structure of 29-dimensional extended real Clifford-Dirac algebra, which has been introduced in o...
The consideration of the bosonic properties of the Dirac equation with arbitrary mass has been conti...
Quantum Field Theory formulated in terms of hermitian fields automatically leads to a spin-statistic...
We discuss bosonization in three dimensions by establishing a connection between the massive Thirrin...
AbstractWe study the Dirac equation of a charged massless spinor on the general charged AdS black ho...
We study bosonization in 2+1 dimensions using mirror symmetry, a duality that relates pairs of super...
Effective field theory is a very useful technique for understanding quantum many body systems. We us...
Abstract Quantum Field Theory formulated in terms of hermitian fields automatically leads to a spin-...
We extend an existing Bose-Fermi equivalence formula to two-dimensional Euclidean space-times with a...
We prove the equivalence between certain fermionic and bosonic theories in two spacetime dimensions....
This talk describes some work done jointly with L. Alvarez-Gaume, J.B. Bost, G. Moore, and C. Vafa [...
We present a path-integral bosonization approach for systems out of equilibrium based on a duality t...
The equivalence is proved between fermionic and scalar field theories on Riemann surfaces of arbitra...
Abstract Massless excitations at the surface of three-dimensional time-reversal invariant topologica...
We develop a new method for bosonizing the Fermi surface based on the formalism of the coadjoint orb...
The structure of 29-dimensional extended real Clifford-Dirac algebra, which has been introduced in o...
The consideration of the bosonic properties of the Dirac equation with arbitrary mass has been conti...
Quantum Field Theory formulated in terms of hermitian fields automatically leads to a spin-statistic...
We discuss bosonization in three dimensions by establishing a connection between the massive Thirrin...
AbstractWe study the Dirac equation of a charged massless spinor on the general charged AdS black ho...
We study bosonization in 2+1 dimensions using mirror symmetry, a duality that relates pairs of super...
Effective field theory is a very useful technique for understanding quantum many body systems. We us...
Abstract Quantum Field Theory formulated in terms of hermitian fields automatically leads to a spin-...