Emergent phenomena arising from the collective behavior of electrons is generally expected when Coulomb interactions dominate over the kinetic energy, as in delocalized quasiparticles in highly degenerate flat bands. Bernal-stacked bilayer graphene intrinsically supports a pair of flat bands predicted to host a variety of spontaneous broken-symmetry states arising from van Hove singularities and a four-fold spin-valley (isospin) degeneracy. Here, we show that ultra-clean samples of bilayer graphene display a cascade of symmetry-broken states with spontaneous and spin and valley ordering at zero magnetic field. Using capacitive sensing in a dual-gated geometry, we tune the carrier density and electric displacement field independently to expl...
The charge carriers in bilayer graphene have both spin and valley degeneracy. Because of its unique ...
The charge carriers in bilayer graphene obey an electron-hole symmetric dispersion at zero magnetic ...
External magnetic fields conventionally suppress superconductivity, both by orbital and paramagnetic...
We report the observation of spin-polarized superconductivity in Bernal bilayer graphene when doped ...
The dominance of Coulomb interactions over kinetic energy of electrons in narrow, non-trivial moir\'...
Motivated by recent experiments [H. Zhou et al., Science 375, 774 (2022) and S. C. de la Barrera et ...
Twisted double bilayer graphene (tDBG) comprises two Bernal-stacked bilayer graphene sheets with a t...
We present measurements of the electronic compressibility, K, of bilayer graphene in both zero and f...
We present measurements of quantized conductance in electrostatically induced quantum point contacts...
A two-dimensional electron system placed in a magnetic field develops Landau levels, where strong Co...
Bernal bilayer graphene has recently been discovered to exhibit a wide range of unique ordered phase...
New phase of matter usually emerges when a given symmetry breaks spontaneously, which can involve ch...
A two-dimensional electron system placed in a magnetic field develops Landau levels, where strong Co...
Motivated by the recent discoveries of superconductivity in bilayer and trilayer graphene, we theore...
The high magnetic field electronic structure of bilayer graphene is enhanced by the spin, valley iso...
The charge carriers in bilayer graphene have both spin and valley degeneracy. Because of its unique ...
The charge carriers in bilayer graphene obey an electron-hole symmetric dispersion at zero magnetic ...
External magnetic fields conventionally suppress superconductivity, both by orbital and paramagnetic...
We report the observation of spin-polarized superconductivity in Bernal bilayer graphene when doped ...
The dominance of Coulomb interactions over kinetic energy of electrons in narrow, non-trivial moir\'...
Motivated by recent experiments [H. Zhou et al., Science 375, 774 (2022) and S. C. de la Barrera et ...
Twisted double bilayer graphene (tDBG) comprises two Bernal-stacked bilayer graphene sheets with a t...
We present measurements of the electronic compressibility, K, of bilayer graphene in both zero and f...
We present measurements of quantized conductance in electrostatically induced quantum point contacts...
A two-dimensional electron system placed in a magnetic field develops Landau levels, where strong Co...
Bernal bilayer graphene has recently been discovered to exhibit a wide range of unique ordered phase...
New phase of matter usually emerges when a given symmetry breaks spontaneously, which can involve ch...
A two-dimensional electron system placed in a magnetic field develops Landau levels, where strong Co...
Motivated by the recent discoveries of superconductivity in bilayer and trilayer graphene, we theore...
The high magnetic field electronic structure of bilayer graphene is enhanced by the spin, valley iso...
The charge carriers in bilayer graphene have both spin and valley degeneracy. Because of its unique ...
The charge carriers in bilayer graphene obey an electron-hole symmetric dispersion at zero magnetic ...
External magnetic fields conventionally suppress superconductivity, both by orbital and paramagnetic...