One-Dimensional Hole Gas in Germanium/Silicon Nanowire Heterostructures
arXiv:cond-mat/0507273 · doi:10.1073/pnas.0504581102
Abstract
Two-dimensional electron and hole gas systems, enabled through band structure design and epitaxial growth on planar substrates, have served as key platforms for fundamental condensed matter research and high performance devices. The analogous development of one-dimensional (1D) electron or hole gas systems through controlled growth on 1D nanostructure substrates, which could open up opportunities beyond existing carbon nanotube and nanowire systems, has not been realized. Here we report the synthesis and transport studies of a 1D hole gas system based on a free-standing germanium/silicon (Ge/Si) core/shell nanowire heterostructure. Room temperature electrical transport measurements show clearly hole accumulation in undoped Ge/Si nanowire heterostructures, in contrast to control experiments on single component nanowires. Low-temperature studies show well controlled Coulomb blockade oscillations when the Si shell serves as a tunnel barrier to the hole gas in the Ge channel. Transparent contacts to the hole gas also have been reproducibly achieved by thermal annealing. In such devices, we observe conductance quantization at low temperatures, corresponding to ballistic transport through 1D subbands, where the measured subband energy spacings agree with calculations for a cylindrical confinement potential. In addition, we observe a 0.7 structure, which has been attributed to spontaneous spin polarization, suggesting the universality of this phenomenon in interacting 1D systems. Lastly, the conductance exhibits little temperature dependence, consistent with our calculation of reduced backscattering in this 1D system, and suggests that transport is ballistic even at room temperature.
17 pages, 5 figures
References in corpus (1)
Cited by in corpus (35)
- Wafer-Scale Assembly of Semiconductor Nanowire Arrays by Contact Printing
- Prospects for Spin-Based Quantum Computing
- Direct Measurement of the Spin-Orbit Interaction in a Two-Electron InAs Nanowire Quantum Dot
- Gate capacitance of back-gated nanowire field-effect transistors
- Scaling theory put into practice: first-principles modeling of transport in doped silicon nanowires
- Strong and Tunable Spin-Orbit Coupling of One-Dimensional Holes in Ge/Si Core/Shell Nanowires
- Nanomaterials for Quantum Information Science and Engineering
- Electronic transport in Si nanowires: Role of bulk and surface disorder
- Heavy hole states in Germanium hut wires
- Majorana Fermions in Ge/Si Hole Nanowires
- Magnetotransport properties of individual InAs nanowires
- Recent advances in hole-spin qubits
- Size dependence of the bulk and surface phonon modes of gallium arsenide nanowires as measured by Raman Spectroscopy
- Tunable g factor and phonon-mediated hole spin relaxation in Ge/Si nanowire quantum dots
- Raman spectroscopy and strain mapping in individual Ge-SixGe1-x core-shell nanowires
- Surface dangling bond states and band-lineups in hydrogen-terminated Si, Ge, and Ge/Si nanowires
- Acoustic phonons and strain in core/shell nanowires
- PAMELA: An Open-Source Software Package for Calculating Nonlocal Exact Exchange Effects on Electron Gases in Core-Shell Nanowires
- HADOKEN: An Open-Source Software Package for Predicting Electron Confinement Effects in Various Nanowire Geometries and Configurations
- Efficient Chebyshev polynomial approach to quantum conductance calculations: Application to twisted bilayer graphene
- Theory of box-model hyperfine couplings and transport signatures of long-range nuclear-spin coherence in a quantum-dot spin valve
- Strongly Interacting Holes in Ge/Si Nanowires
- Assessing the potential of Ge/SiGe quantum dots as hosts for singlet-triplet qubits
- Spin filtering in germanium/silicon core/shell nanowires with pseudo-helical gap
- Interplay of relativistic and nonrelativistic transport in atomically precise segmented graphene nanoribbons
- Low-energy hole subband dispersions in a cylindrical Ge nanowire: the effects of the nanowire growth direction
- Scalable and Tunable In-Plane Ge/Si(001) Nanowires Grown by Molecular Beam Epitaxy
- Two-band description of the strong `spin'-orbit coupled one-dimensional hole gas in a cylindrical Ge nanowire
- Electrical manipulation of a hole `spin'-orbit qubit in nanowire quantum dot: the nontrivial magnetic field effects
- Hole subband dispersions in a cylindrical Ge nanowire: exact results based on the axial Luttinger-Kohn Hamiltonian
- Hole subband dispersions and strong `spin'-orbit coupling in a cylindrical Ge nanowire
- High thermoelectric figure of merit of quantum dot array quantum wires
- Highly transparent contacts to the 1D hole gas in ultra-scaled Ge/Si core/shell nanowires
- Energy Band Engineering of Periodic Scatterers by Quasi-1D Confinement
- Transport spectroscopy for Paschen-Back splitting of Landau levels in InAs nanowires