Quantum transport in GaN/AlN double-barrier heterostructure nanowires

Physics – Condensed Matter – Mesoscale and Nanoscale Physics

Scientific paper

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

submitted

Scientific paper

We investigate electronic transport in n-i-n GaN nanowires with and without AlN double barriers. The nanowires are grown by catalyst-free, plasma-assisted molecular beam epitaxy enabling abrupt GaN/AlN interfaces as well as longitudinal n-type doping modulation. At low temperature, transport in n-i-n GaN nanowires is dominated by the Coulomb blockade effect. Carriers are confined in the undoped middle region, forming single or multiple islands with a characteristic length of ~100 nm. The incorporation of two AlN tunnel barriers causes confinement to occur within the GaN well in between. In the case of 6-nm-thick wells and 2-nm-thick barriers, we observe characteristic signatures of Coulomb-blockaded transport in single quantum dots with discrete energy states. For narrower wells and barriers, Coulomb-blockade effects do not play a significant role while the onset of resonant tunneling via the confined quantum levels is accompanied by a negative differential resistance surviving up to ~150 K.

No associations

LandOfFree

Say what you really think

Search LandOfFree.com for scientists and scientific papers. Rate them and share your experience with other people.

Rating

Quantum transport in GaN/AlN double-barrier heterostructure nanowires does not yet have a rating. At this time, there are no reviews or comments for this scientific paper.

If you have personal experience with Quantum transport in GaN/AlN double-barrier heterostructure nanowires, we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Quantum transport in GaN/AlN double-barrier heterostructure nanowires will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFWR-SCP-O-209595

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.