Carbon nanotube based magnetic tunnel junctions for electromagnetic nondestructive evaluation

  • Wincheski, Buzz
  • Namkung, Min
  • Paik, Sunmok
  • Smits, Jan M.
Citations

SCOPUS

1

초록

Spin coherent transport in carbon nanotubes enables single-nanotube devices for magnetic field sensing. This unique transport property of single wailed carbon nanotubes (SWCNTs) has been studied for development into advanced sensors for nondestructive evaluation (NDE). Coupling of a single walled carbon nanotube to ferromagnetic electrodes is predicted to form a carbon nanotube magnetic tunnel junction. Fabrication of such devices has been performed through scanning probe and electron beam lithography. Purified single walled carbon nanotubes are deposited across electrodes to complete device fabrication. A spin-coherent quantum transport theory based on a nonequilibrium Green's function method has been established to predict conductance and magnetoconductance across junctions. Experimental measurements of the room temperature conductance of Cobalt/SWCNT/Cobalt junctions have been performed.

제목
Carbon nanotube based magnetic tunnel junctions for electromagnetic nondestructive evaluation
저자
Wincheski, BuzzNamkung, MinPaik, SunmokSmits, Jan M.
DOI
10.1557/proc-721-e6.10
발행일
2002
유형
Conference paper
저널명
Materials Research Society Symposium - Proceedings
721
페이지
271 ~ 275