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Majorana zero modes in superconductor–semiconductor heterostructures
Realizing topological superconductivity and Majorana zero modes in the laboratory is a
major goal in condensed-matter physics. In this Review, we survey the current status of this …
major goal in condensed-matter physics. In this Review, we survey the current status of this …
Electronic transport and quantum phenomena in nanowires
Nanowires are natural one-dimensional channels and offer new opportunities for advanced
electronic quantum transport experiments. We review recent progress on the synthesis of …
electronic quantum transport experiments. We review recent progress on the synthesis of …
RETRACTED ARTICLE: Epitaxy of advanced nanowire quantum devices
Semiconductor nanowires are ideal for realizing various low-dimensional quantum devices.
In particular, topological phases of matter hosting non-Abelian quasiparticles (such as …
In particular, topological phases of matter hosting non-Abelian quasiparticles (such as …
Topotaxial mutual-exchange growth of magnetic Zintl Eu3In2As4 nanowires with axion insulator classification
Due to quasi-one-dimensional confinement, nanowires possess unique electronic
properties, which can promote specific device architectures. However, nanowire growth …
properties, which can promote specific device architectures. However, nanowire growth …
Template-assisted scalable nanowire networks
Topological qubits based on Majorana Fermions have the potential to revolutionize the
emerging field of quantum computing by making information processing significantly more …
emerging field of quantum computing by making information processing significantly more …
Field effect enhancement in buffered quantum nanowire networks
III–V semiconductor nanowires have shown great potential in various quantum transport
experiments. However, realizing a scalable high-quality nanowire-based platform that could …
experiments. However, realizing a scalable high-quality nanowire-based platform that could …
Metal-seeded growth of III–V semiconductor nanowires: towards gold-free synthesis
Semiconductor nanowires composed of III–V materials have enormous potential to add new
functionality to electronics and optical applications. However, integration of these promising …
functionality to electronics and optical applications. However, integration of these promising …
Nonlocal supercurrent of quartets in a three-terminal Josephson junction
A novel nonlocal supercurrent, carried by quartets, each consisting of four electrons, is
expected to appear in a voltage-biased three-terminal Josephson junction. This …
expected to appear in a voltage-biased three-terminal Josephson junction. This …
Rationally designed single-crystalline nanowire networks
Rational bottom-up assembly of nanowire networks may be a way to successfully continue
the miniaturization, which is the main driving force behind the semiconductor industry. So …
the miniaturization, which is the main driving force behind the semiconductor industry. So …
Nanowires bending over backward from strain partitioning in asymmetric core–shell heterostructures
The flexibility and quasi-one-dimensional nature of nanowires offer wide-ranging
possibilities for novel heterostructure design and strain engineering. In this work, we realize …
possibilities for novel heterostructure design and strain engineering. In this work, we realize …