168 citations
- Université de SherbrookeCA18 papers
- Canadian Institute for Advanced ResearchCA9 papers
- Centre National de la Recherche ScientifiqueFR5 papers
- Université Paris-SaclayFR5 papers
- Commissariat à l'Énergie Atomique et aux Énergies AlternativesFR4 papers
- The University of Texas at AustinUS4 papers
- CEA Paris-SaclayFR3 papers
- CEA GrenobleFR2 papers
- Florida State UniversityUS2 papers
- National High Magnetic Field LaboratoryUS2 papers
- The University of TokyoJP2 papers
- Université Grenoble AlpesFR2 papers
5 papers · 1 filter
Pseudogap phase of cuprate superconductors confined by Fermi surface topology
N. Doiron-Leyraud, O. Cyr-Choinière, S. Badoux +15
The properties of cuprate high-temperature superconductors are largely shaped by competing phases whose nature is often a mystery. Chiefly among them is the pseudogap phase, which…
Anisotropic phase diagram and spin fluctuations of the hyperkagome magnet Gd3Ga5O12 as revealed by sound velocity measurements
A. Rousseau, J. -M. Parent, J. A. Quilliam
Sound velocity and attenuation measurements on the frustrated garnet material Gd3Ga5O12 (GGG) are presented as a function of field and temperature, using two different acoustic mod…
Entanglement renormalization for disordered systems
Andrew M. Goldsborough, Glen Evenbly
We propose a tensor network method for investigating strongly disordered systems that is based on an adaptation of entanglement renormalization [G. Vidal, Phys. Rev. Lett. 99, 2204…
Effect of higher-order nonlinearities on amplification and squeezing in Josephson parametric amplifiers
Samuel Boutin, David M. Toyli, Aditya V. Venkatramani +3
Single-mode Josephson junction-based parametric amplifiers are often modeled as perfect amplifiers and squeezers. We show that, in practice, the gain, quantum efficiency, and outpu…
Nuclear magnetic resonance line shapes of Wigner crystals in C-enriched graphene
R. Côté, Jean-Michel Parent
Assuming that the nuclear magnetic resonance (NMR) signal from a C isotope enriched layer of graphene can be made sufficiently intense to be measured, we compute the NMR\ li…