English

High Mobility Multiple-Channel AlScN/GaN Heterostructures

Materials Science 2026-03-03 v1

Abstract

Aluminum scandium nitride (AlScN) is a promising barrier material for gallium nitride (GaN)-based transistors for the next generation of radio-frequency electronic devices. In this work, we examine the transport properties of two dimensional electron gases (2DEGs) in single- and multi-channel AlScN/GaN heterostructures grown by molecular beam epitaxy, and demonstrate the lowest sheet resistance among AlScN-based systems reported to date. Assorted schemes of GaN/AlN interlayers are first introduced in single-channel structures between AlScN and GaN to improve conductivity, increasing electron mobility up to 13701370 cm2^{2}/V\cdots at 300 K and 41604160 cm2^{2}/V\cdots at 77 K, reducing the sheet resistance down to 170 Ω/\Omega/\square and 70 Ω/\Omega/\square respectively. These improvements are then leveraged in multi-channel heterostructures, reaching sheet resistances of 65 Ω/\Omega/\square for three channels and 45 Ω/\Omega/\square for five channels at 300 K, further reduced to 21 Ω/\Omega/\square and 13 Ω/\Omega/\square at 2 K, respectively, confirming the presence of multiple 2DEGs. Structural characterization indicates pseudomorphic growth with smooth surfaces, while partial barrier relaxation and surface roughening are observed at high scandium content, with no impact on mobility. This first demonstration of ultra-low sheet resistance multi-channel AlScN/GaN heterostructures places AlScN on par with state-of-the-art multi-channel Al(In)N/GaN systems, showcasing its capacity to advance existing and enable new high-speed, high-power electronic devices.

Keywords

Cite

@article{arxiv.2511.10849,
  title  = {High Mobility Multiple-Channel AlScN/GaN Heterostructures},
  author = {Aias Asteris and Thai-Son Nguyen and Chuan F. C. Chang and Chandrashekhar Savant and Pierce Lonergan and Huili Grace Xing and Debdeep Jena},
  journal= {arXiv preprint arXiv:2511.10849},
  year   = {2026}
}

Comments

10 pages, 10 figures

R2 v1 2026-07-01T07:36:44.250Z