The effect of strain-induced pseudo-magnetic fields on the optical properties of graphene has not been experimentally explored yet. Here, pseudo-magnetic fields reaching values of 100 T are shown to increase by more than an order of magnitude the relaxation lifetime of hot carriers in periodically strained graphene
We revise the tight-binding approach to strained or curved graphene in the presence of external prob...
One of the intriguing characteristics of honeycomb lattices is the appearance of a pseudomagnetic fi...
Mechanical deformations of graphene induce a term in the Dirac Hamiltonian that is reminiscent of an...
The creation of pseudo-magnetic fields in strained graphene has emerged as a promising route to inve...
The research progress toward creating efficient light sources on graphene-based electronic-photonic ...
We investigate electric and magnetic properties of graphene with rotationally symmetric strain. The ...
Particular strain geometry in graphene could lead to a uniform pseudomagnetic field of order 10T and...
Strain has been known to modify the electric and optical properties of graphene. This phenomenon has...
We discuss the physics of pseudomagnetic field,s which can be induced in graphene by applying strain...
Magnetic effects at optical frequencies are notoriously weak, so magneto-optical devices must be lar...
Lattice deformations couple to the low-energy electronic excitations of graphene as vector fields si...
We study the effects of strain on the electronic properties and persistent current characteristics o...
We analyze the effects of the strain-induced pseudomagnetic field on the subthreshold mechanism of h...
arXiv:1607.07300v1We report on mesoscopic transport fingerprints in disordered graphene caused by st...
Bandgap opening due to strain engineering is a key architect for making graphene’s optoelectronic, s...
We revise the tight-binding approach to strained or curved graphene in the presence of external prob...
One of the intriguing characteristics of honeycomb lattices is the appearance of a pseudomagnetic fi...
Mechanical deformations of graphene induce a term in the Dirac Hamiltonian that is reminiscent of an...
The creation of pseudo-magnetic fields in strained graphene has emerged as a promising route to inve...
The research progress toward creating efficient light sources on graphene-based electronic-photonic ...
We investigate electric and magnetic properties of graphene with rotationally symmetric strain. The ...
Particular strain geometry in graphene could lead to a uniform pseudomagnetic field of order 10T and...
Strain has been known to modify the electric and optical properties of graphene. This phenomenon has...
We discuss the physics of pseudomagnetic field,s which can be induced in graphene by applying strain...
Magnetic effects at optical frequencies are notoriously weak, so magneto-optical devices must be lar...
Lattice deformations couple to the low-energy electronic excitations of graphene as vector fields si...
We study the effects of strain on the electronic properties and persistent current characteristics o...
We analyze the effects of the strain-induced pseudomagnetic field on the subthreshold mechanism of h...
arXiv:1607.07300v1We report on mesoscopic transport fingerprints in disordered graphene caused by st...
Bandgap opening due to strain engineering is a key architect for making graphene’s optoelectronic, s...
We revise the tight-binding approach to strained or curved graphene in the presence of external prob...
One of the intriguing characteristics of honeycomb lattices is the appearance of a pseudomagnetic fi...
Mechanical deformations of graphene induce a term in the Dirac Hamiltonian that is reminiscent of an...