Heterostructures incorporated in one-dimensional semiconductor materials and devices

Claes Thelander, Mikael Björk, Ann Persson, BJ Ohlsson, T Sass, Reine Wallenberg, Lars Samuelson

Forskningsoutput: Kapitel i bok/rapport/Conference proceedingKapitel samlingsverkForskning

Sammanfattning

As an alternative to traditional top-down techniques for fabrication of one-dimensional devices we here report an approach wherein a bottom-up technique is used to create one-dimensional device structures. We use the vapor-liquid-solid growth method, in which a catalytically active gold nanoparticle forms a eutectic alloy with the nanowire constituents. Our method of growth allows atomically abrupt interfaces between different III-V semiconductors, also for highly mismatched combinations for which conventional growth techniques can not be used. Special emphasis is put on the processing of ohmic contacts to nanowires. We describe the transport properties of nanowires containing heterostructures from which band off-sets between two different binary materials are determined. Finally, we report the creation of double-barrier resonant tunneling diodes in which a single InAs quantum dot surrounded by InP tunnel barriers acts as the active element in the device, resulting in energetically sharp resonant tunneling peaks reflecting tunneling into zero-dimensional states of the quantum dot.
Originalspråkengelska
Titel på värdpublikationPhysics and Semiconductors 2002 : Proceedings of the 26th International Conference on the Physics of Semiconductors
FörlagInst of Physics Pub Inc
Sidor253-260
Volym171
ISBN (tryckt)0750309245
StatusPublished - 2003

Publikationsserier

Namn
Volym171

Bibliografisk information

The information about affiliations in this record was updated in December 2015.
The record was previously connected to the following departments: Polymer and Materials Chemistry (LTH) (011001041), Solid State Physics (011013006)

Ämnesklassifikation (UKÄ)

  • Den kondenserade materiens fysik (Här ingår: Materialfysik, nanofysik)
  • Kemi

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