most citedAlgebraic spin liquid as the mother of many competing orders

272 citations · 458 across the 6 of their papers we have counts for

collaborators

6 papers

cond-mat.str-el20052 cited

Vortex description of the fractionalized phase in exciton bose condensate

Sung-Sik Lee, T. Senthil, Patrick A. Lee

As a sequel to the previous work [Phys. Rev. B 72, 235104 (2005)] we present a vortex description of the fractionalized phase in exciton bose condensate. Magnetic flux line and mon…

cond-mat.dis-nn200519 cited

Ordering near the percolation threshold in models of 2D interacting bosons with quenched dilution

N. Bray-Ali, J. E. Moore, T. Senthil +1

Randomly diluted quantum boson and spin models in two dimensions combine the physics of classical percolation with the well-known dimensionality dependence of ordering in quantum l…

cond-mat.str-el2005108 cited

Fractionalization, topological order, and quasiparticle statistics

Masaki Oshikawa, T. Senthil

We argue, based on general principles, that topological order is essential to realize fractionalization in gapped insulating phases in dimensions . In with genus $g…

cond-mat.str-el2005272 cited

Algebraic spin liquid as the mother of many competing orders

Michael Hermele, T. Senthil, Matthew P. A. Fisher

We study the properties of a class of two-dimensional interacting critical states -- dubbed algebraic spin liquids -- that can arise in two-dimensional quantum magnets. A particula…

cond-mat.str-el20043 cited

Spontaneous interlayer coherence in bilayer Kondo systems

T. Senthil, Matthias Vojta

Bilayer Kondo systems present interesting models to illustrate the competition between the Kondo effect and intermoment exchange. Such bilayers can exhibit two sharply distinct Fer…

cond-mat.str-el200454 cited

Quantum phase transitions out of the heavy Fermi liquid

T. Senthil, Subir Sachdev, Matthias Vojta

We review recent work on the instability of the heavy Fermi liquid state (FL) of the Kondo lattice towards a magnetic metal in which the local moments are not part of the Fermi sea…