Monopole operators are studied in a large family of quantum critical points between Dirac and topological quantum spin liquids (QSLs): chiral and Z$_{2}$ QSLs. These quantum phase transitions are described by conformal field theories (CFTs): quantum electrodynamics in 2+1 dimensions with 2N flavors of two-component massless Dirac fermions and a four-fermion interaction. For the transition to a chiral spin liquid, it is the Gross-Neveu interaction (QED$_{3}$-GN), while for the transitions to Z$_{2}$ QSLs it is a superconducting pairing term with general spin/valley structure (generalized QED$_{3}$-Z$_{2}$GN). Using the state-operator correspondence, we obtain monopole scaling dimensions to sub-leading order in 1/N. For monopoles with a minim...
We apply the conformal bootstrap technique to study the $U(1)$ Dirac spin liquid (i.e. $N_f=4$ QED$_...
We apply the conformal bootstrap technique to study the $U(1)$ Dirac spin liquid (i.e. $N_f=4$ QED$_...
We analyze a Higgs transition from a U(1) Dirac spin liquid to a gapless $\mathbb{Z}_2$ spin liquid....
Abstract We study monopole operators with the lowest possible topological charge q = 1/2 at the infr...
The space of local operators in three-dimensional quantum electrodynamics contains monopole operator...
The space of local operators in three-dimensional quantum electrodynamics contains monopole operator...
We present a direct Monte Carlo determination of the scaling dimension of a topological defect opera...
Quantum magnets provide the simplest example of strongly interacting quantum matter, yet they contin...
The interplay of symmetry and topology has been at the forefront of recent progress in quantum matte...
We study monopole operators at the conformal critical point of the ℂ ℙ N b − 1 $$ \mathbb{C}{\mathrm...
We perform large-scale quantum Monte Carlo simulations of SLAC fermions on a two-dimensional square ...
Abstract We study monopole operators at the infrared fixed points of U(1) Chern-Simons-matter theori...
The algebraic spin liquid is a long-sought-after phase of matter characterized by the absence of qua...
We apply the conformal bootstrap technique to study the $U(1)$ Dirac spin liquid (i.e. $N_f=4$ QED$_...
University of Minnesota Ph.D. dissertation. May 2020. Major: Physics. Advisors: Alex Kamenev, Rafael...
We apply the conformal bootstrap technique to study the $U(1)$ Dirac spin liquid (i.e. $N_f=4$ QED$_...
We apply the conformal bootstrap technique to study the $U(1)$ Dirac spin liquid (i.e. $N_f=4$ QED$_...
We analyze a Higgs transition from a U(1) Dirac spin liquid to a gapless $\mathbb{Z}_2$ spin liquid....
Abstract We study monopole operators with the lowest possible topological charge q = 1/2 at the infr...
The space of local operators in three-dimensional quantum electrodynamics contains monopole operator...
The space of local operators in three-dimensional quantum electrodynamics contains monopole operator...
We present a direct Monte Carlo determination of the scaling dimension of a topological defect opera...
Quantum magnets provide the simplest example of strongly interacting quantum matter, yet they contin...
The interplay of symmetry and topology has been at the forefront of recent progress in quantum matte...
We study monopole operators at the conformal critical point of the ℂ ℙ N b − 1 $$ \mathbb{C}{\mathrm...
We perform large-scale quantum Monte Carlo simulations of SLAC fermions on a two-dimensional square ...
Abstract We study monopole operators at the infrared fixed points of U(1) Chern-Simons-matter theori...
The algebraic spin liquid is a long-sought-after phase of matter characterized by the absence of qua...
We apply the conformal bootstrap technique to study the $U(1)$ Dirac spin liquid (i.e. $N_f=4$ QED$_...
University of Minnesota Ph.D. dissertation. May 2020. Major: Physics. Advisors: Alex Kamenev, Rafael...
We apply the conformal bootstrap technique to study the $U(1)$ Dirac spin liquid (i.e. $N_f=4$ QED$_...
We apply the conformal bootstrap technique to study the $U(1)$ Dirac spin liquid (i.e. $N_f=4$ QED$_...
We analyze a Higgs transition from a U(1) Dirac spin liquid to a gapless $\mathbb{Z}_2$ spin liquid....