Ultra-sensitive and Wide Bandwidth Thermal Measurements of Graphene at Low Temperatures
arXiv:1202.5737 · doi:10.1103/PhysRevX.2.031006
Abstract
Graphene is a material with remarkable electronic properties and exceptional thermal transport properties near room temperature, which have been well examined and understood. However at very low temperatures the thermodynamic and thermal transport properties are much less well explored and somewhat surprisingly, is expected to exhibit extreme thermal isolation. Here we demonstrate an ultra-sensitive, wide-bandwidth measurement scheme to probe the thermal transport and thermodynamic properties of the electron gas of graphene. We employ Johnson noise thermometry at microwave frequency to sensitively measure the temperature of the electron gas with resolution of and a bandwidth of 80 MHz. We have measured the electron-phonon coupling from 2-30 K at a charge density of . Utilizing bolometric mixing, we have sensed temperature oscillations with period of 430 ps and have determined the heat capacity of the electron gas to be at 5 K which is consistent with that of a two dimensional, Dirac electron gas. These measurements suggest that graphene-based devices together with wide bandwidth noise thermometry can generate substantial advances in the areas of ultra-sensitive bolometry, calorimetry, microwave and terahertz photo-detection, and bolometric mixing for applications in areas such as observational astronomy and quantum information and measurement.
8 pages, 4 figures
References in corpus (24)
- The electronic properties of graphene
- The Raman Fingerprint of Graphene
- Boron nitride substrates for high-quality graphene electronics
- Intrinsic and Extrinsic Performance Limits of Graphene Devices on SiO2
- Temperature dependent transport in suspended graphene
- Controlling electron-phonon interactions in graphene at ultra high carrier densities
- Acoustic phonon scattering limited carrier mobility in 2D extrinsic graphene
- Thermoelectric and Magnetothermoelectric Transport Measurements of Graphene
- Electronic transport in graphene: A semi-classical approach including midgap states
- Dual-gated bilayer graphene hot electron bolometer
- Evidence of the role of contacts on the observed electron-hole asymmetry in graphene
- Single-mode heat conduction by photons
- Electron-phonon heat transfer in monolayer and bilayer graphene
- Shot Noise in Ballistic Graphene
- Slow imbalance relaxation and thermoelectric transport in graphene
- Quantum-critical relativistic magnetotransport in graphene
- Magnetic oscillations in planar systems with the Dirac-like spectrum of quasiparticle excitations II: transport properties
- Shot Noise in Graphene
- Nanobolometers for THz Photon Detection
- Measurement of the electronic compressibility of bilayer graphene
- Anomalous thermodynamics of Coulomb interacting massless Dirac fermions in two spatial dimensions
- Impurity Scattering and Mott's Formula in Graphene
- Bolometric response in graphene based superconducting tunnel junctions
- Magnetotransport and thermoelectricity in disordered graphene
Cited by in corpus (39)
- Observation of the Dirac fluid and the breakdown of the Wiedemann-Franz law in graphene
- Hydrodynamics of electrons in graphene
- The electronic thermal conductivity of graphene
- Ultrafast graphene-based broadband THz detector
- Terahertz Science and Technology of Carbon Nanomaterials
- Transport in inhomogeneous quantum critical fluids and in the Dirac fluid in graphene
- Graphene-based Josephson junction single photon detector
- Violation of the Wiedemann-Franz law in clean graphene layers
- Thermoelectric graphene photodetectors with sub-nanosecond response times at Terahertz frequencies
- Weak localization scattering lengths in epitaxial, and CVD graphene
- Electron-phonon mediated heat flow in disordered graphene
- Electronic hydrodynamics and the breakdown of the Wiedemann-Franz and Mott laws in interacting metals
- Energy Flows in Graphene: Hot Carrier Dynamics and Cooling
- Phonon bottleneck in graphene-based Josephson junctions at millikelvin temperatures
- Performance of Graphene Thermal Photon Detectors
- Electron-phonon cooling in large monolayer graphene devices
- Microwave nanobolometer based on proximity Josephson junctions
- Ultra-fast calorimetric measurements of the electronic heat capacity of graphene
- Electron energy and temperature relaxation in graphene on a piezoelectric substrate
- Andreev reflection in s-type superconductor proximized 3D topological insulator
- Measurements of a Quantum Dot with an Impedance-Matching On-Chip LC Resonator at GHz Frequencies
- Thermal Transport Signatures of Broken-Symmetry Phases in Graphene
- Energy transport via multiphonon processes in graphene
- Four-terminal graphene-superconductor thermal switch controlled by the superconducting phase difference
- Joule heating effects in high transparency Josephson junctions
- Nonlinear vs. bolometric radiation response and phonon thermal conductance in graphene-superconductor junctions
- Bloch-Grüneisen temperature and universal scaling of normalized resistivity in doped graphene revisited
- Relation between Johnson Noise and heating power in a two-terminal conductor
- Current Noise of Hydrodynamic Electrons
- High-Bandwidth, Variable-Resistance Differential Noise Thermometry
- Non-equilibrium properties of graphene probed by superconducting tunnel spectroscopy
- Graphene Oxide Photoreduction Recovers Graphene Hot Electron Cooling Dynamics
- Hydrodynamics of the electronic Fermi liquid: a pedagogical overview
- Hot Carrier Thermalization and Josephson Inductance Thermometry in a Graphene-based Microwave Circuit
- Sub-Kelvin Lateral Thermal Transport in Diffusive Graphene
- Performance limits due to thermal transport in graphene single-photon bolometers
- Resolving the Corbino Shockley-Ramo Paradox for Hydrodynamic Current Noise
- Non-local origin and correlations in the Johnson noise at nonuniform temperatures
- Simultaneous measurement of thermal conductivity and specific heat in quasi-two-dimensional membranes using the 3ω method