We describe a technique which allows a direct measurement of the relative Fermi energy in an electron system by employing a double-layer heterostructure. We illustrate this method by using a graphene double layer to probe the Fermi energy as a function of carrier density in monolayer graphene, at zero and in high magnetic fields. This technique allows us to determine the Fermi velocity, Landau level spacing, and Landau level broadening. We find that the N = 0 Landau level broadening is larger by comparison to the broadening of upper and lower Landau levels.11Nscopu
This thesis describes studies on two-dimensional electron gases (2DEG) in graphene and related 2D s...
This thesis describes studies on two-dimensional electron gases (2DEG) in graphene and related 2D sy...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2019Cataloged from PDF...
We describe an experimental technique to measure the chemical potential μ in atomically thin layered...
We describe an experimental technique to measure the chemical potential μ in atomically thin layered...
Application of a magnetic field to conductors causes the charge carriers to circulate in cyclotron o...
textTwo graphene layers placed in close proximity offer a unique system to investigate interacting e...
The wave function of Dirac fermions is a two-component spinor. In graphene, a one-atom-thick film sh...
Graphene is a two-dimensional carbon allotrope that has gained a significant amount of attention in ...
We present observations of cyclotron resonance in graphene Van der Waals heterostructure devices. Su...
Graphene, a two-dimensional carbon allotrope, has interesting electronic properties resulting from i...
Graphene, a two-dimensional carbon allotrope, has interesting electronic properties resulting from i...
Since its experimental discovery in 2004, graphene (a single layer of graphite) has attracted a lot ...
Since its experimental discovery in 2004, graphene (a single layer of graphite) has attracted a lot ...
Since its experimental discovery in 2004, graphene (a single layer of graphite) has attracted a lot ...
This thesis describes studies on two-dimensional electron gases (2DEG) in graphene and related 2D s...
This thesis describes studies on two-dimensional electron gases (2DEG) in graphene and related 2D sy...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2019Cataloged from PDF...
We describe an experimental technique to measure the chemical potential μ in atomically thin layered...
We describe an experimental technique to measure the chemical potential μ in atomically thin layered...
Application of a magnetic field to conductors causes the charge carriers to circulate in cyclotron o...
textTwo graphene layers placed in close proximity offer a unique system to investigate interacting e...
The wave function of Dirac fermions is a two-component spinor. In graphene, a one-atom-thick film sh...
Graphene is a two-dimensional carbon allotrope that has gained a significant amount of attention in ...
We present observations of cyclotron resonance in graphene Van der Waals heterostructure devices. Su...
Graphene, a two-dimensional carbon allotrope, has interesting electronic properties resulting from i...
Graphene, a two-dimensional carbon allotrope, has interesting electronic properties resulting from i...
Since its experimental discovery in 2004, graphene (a single layer of graphite) has attracted a lot ...
Since its experimental discovery in 2004, graphene (a single layer of graphite) has attracted a lot ...
Since its experimental discovery in 2004, graphene (a single layer of graphite) has attracted a lot ...
This thesis describes studies on two-dimensional electron gases (2DEG) in graphene and related 2D s...
This thesis describes studies on two-dimensional electron gases (2DEG) in graphene and related 2D sy...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2019Cataloged from PDF...