Motivated by recent experimental evidence of charge order in the pseudogap phase of cuprates, we perform a variational analysis of spin-singlet density wave ordering in metals with antiferromagnetic interactions on the square lattice, using a wave function with double occupancy projected out. We examine ordering with and without time-reversal symmetry, with an arbitrary wave vector and a tunable form factor. Depending on parameters, we find d-form factor density wave ordering, with a wave vector either parallel to the lattice generators or diagonally oriented, or a ground state which carries a time-reversal breaking pattern of spontaneous currents.Physic
International audienceThe coexistence of multiple quasi-degenerate orders is the hallmark of the str...
Pair density waves, identified by Cooper pairs with finite center-of-mass momentum, have recently be...
Two-dimensional materials constitute a prominent showplace of competing many-body instabilities such...
Recent experiments in the underdoped regime of the hole-doped cuprates have found evidence for an in...
Metals interacting via short-range antiferromagnetic fluctuations are unstable to sign-changing supe...
High-temperature superconductivity, with transition temperatures up to ≈134 K at ambient pressure, o...
We study a quasi-two-dimensional classical Landau-Ginzburg-Wilson effective field theory in the pres...
We study the onset of spin-density wave order in itinerant electron systems via a two-dimensional la...
We present a theory of the pinning of dynamic spin-density-wave (SDW) fluctuations in a d-wave super...
We study the static charge correlation function in a one-band model on a square lattice. The Hamilto...
Self-consistent calculations of spin (charge) density wave order (SDW/CDW) parameters have been perf...
In underdoped cuprates, the interplay of the pseudogap, superconductivity, and charge and spin order...
We study charge-ordered solutions for fermions on a square lattice interacting with dynamic antiferr...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, May, 2020Cataloged fro...
16 pages, 14 figuresInternational audienceWe address the timely issue of the presence of charge orde...
International audienceThe coexistence of multiple quasi-degenerate orders is the hallmark of the str...
Pair density waves, identified by Cooper pairs with finite center-of-mass momentum, have recently be...
Two-dimensional materials constitute a prominent showplace of competing many-body instabilities such...
Recent experiments in the underdoped regime of the hole-doped cuprates have found evidence for an in...
Metals interacting via short-range antiferromagnetic fluctuations are unstable to sign-changing supe...
High-temperature superconductivity, with transition temperatures up to ≈134 K at ambient pressure, o...
We study a quasi-two-dimensional classical Landau-Ginzburg-Wilson effective field theory in the pres...
We study the onset of spin-density wave order in itinerant electron systems via a two-dimensional la...
We present a theory of the pinning of dynamic spin-density-wave (SDW) fluctuations in a d-wave super...
We study the static charge correlation function in a one-band model on a square lattice. The Hamilto...
Self-consistent calculations of spin (charge) density wave order (SDW/CDW) parameters have been perf...
In underdoped cuprates, the interplay of the pseudogap, superconductivity, and charge and spin order...
We study charge-ordered solutions for fermions on a square lattice interacting with dynamic antiferr...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, May, 2020Cataloged fro...
16 pages, 14 figuresInternational audienceWe address the timely issue of the presence of charge orde...
International audienceThe coexistence of multiple quasi-degenerate orders is the hallmark of the str...
Pair density waves, identified by Cooper pairs with finite center-of-mass momentum, have recently be...
Two-dimensional materials constitute a prominent showplace of competing many-body instabilities such...