One-dimensional hole gas in germanium/silicon nanowire heterostructures
Author:
Publisher
Proceedings of the National Academy of Sciences
Subject
Multidisciplinary
Reference24 articles.
1. Nanoscale Science and Technology: Building a Big Future from Small Things
2. Controlled Growth and Structures of Molecular-Scale Silicon Nanowires
3. Nonuniversal Conductance Quantization in Quantum Wires
4. Fabry - Perot interference in a nanotube electron waveguide
5. High-Field Quasiballistic Transport in Short Carbon Nanotubes
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