DocumentCode
1920980
Title
5.5: Theoretical hints of spin polarized electron field emission from carbon nanotubes
Author
Liang, Shi-Dong
Author_Institution
State Key Lab. of Optoelectron. Mater. & Technol., Sun Yat-Sen Univ., Guangzhou, China
fYear
2010
fDate
26-30 July 2010
Firstpage
94
Lastpage
95
Abstract
We study theoretically the spin polarized electron field emission from carbon nanotube (CN) within an axial magnetic field. It is found that the spin polarization of emission current can reach 0.05~0.08 with 0.1~1 μA emission current in the magnetic field 6 T and the electric field 9~12 V/nm at room temperature. The spin polarizations of the energy distributions oscillate and the peaks reach to 0.15~0.3 near Fermi energy in the magnetic field 6 T. In low temperature 50~100 K, the spin polarization of the emission current can reach to 0.1~0.2 with 0.01~0.02 μA emission current in the magnetic field 6 T and the electric field 8 V/nm. It decreases and remains 0.05 in the temperature ~400 K. These properties of the spin polarization in CN field emission originate from the modification of the energy band structure by the magnetic field.
Keywords
Fermi level; carbon nanotubes; electron field emission; spin polarised electron emission; C; CN field emission; Fermi energy; axial magnetic field; carbon nanotubes; current 0.1 muA to 1 muA; electric field; energy band structure; energy distributions; magnetic field; spin polarized electron field emission; temperature 293 K to 298 K; temperature 50 K to 100 K; Carbon nanotubes; Electric fields; Magnetic fields; Magnetic flux; Materials; TV; Temperature; Carbon nanotube; Field emission; Spin polarization; Zeeman effect;
fLanguage
English
Publisher
ieee
Conference_Titel
Vacuum Nanoelectronics Conference (IVNC), 2010 23rd International
Conference_Location
Palo Alto, CA
Print_ISBN
978-1-4244-7889-7
Electronic_ISBN
978-1-4244-7888-0
Type
conf
DOI
10.1109/IVNC.2010.5563208
Filename
5563208
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