31 citations · 32 across the 3 of their papers we have counts for
6 papers · 1 filter
Hamiltonian reconstruction as metric for variational studies
Kevin Zhang, Samuel Lederer, Kenny Choo +3
Variational approaches are among the most powerful modern techniques to approximately solve quantum many-body problems. These encompass both variational states based on tensor or n…
Quantum aspects of "hydrodynamic" transport from weak electron-impurity scattering
Aaron Hui, Samuel Lederer, Vadim Oganesyan +1
Recent experimental observations of apparently hydrodynamic electronic transport have generated much excitement. However, the understanding of the observed non-local transport (whi…
Tests of nematic-mediated superconductivity applied to BaSrNiAs
Samuel Lederer, Erez Berg, Eun-Ah Kim
In many unconventional superconductors, nematic quantum fluctuations are strongest where the critical temperature is highest, inviting the conjecture that nematicity plays an impor…
Linking the pseudo-gap in the cuprates with local symmetry breaking: a commentary
Steven A. Kivelson, Samuel Lederer
Perspective on S. Mukhopadhyay, et al. Evidence for a vestigial nematic state in the cuprate pseudogap phase, PNAS 116, 13249 (2019); arXiv:1904.00915.
Measuring the imaginary time dynamics of quantum materials
S. Lederer, D. Jost, T. Böhm +3
Theoretical analysis typically involves imaginary-time correlation functions. Inferring real-time dynamical response functions from this information is notoriously difficult. Howev…
Monte Carlo Studies of Quantum Critical Metals
Erez Berg, Samuel Lederer, Yoni Schattner +1
Metallic quantum critical phenomena are believed to play a key role in many strongly correlated materials, including high temperature superconductors. Theoretically, the problem of…