DocumentCode :
3285456
Title :
Is it possible to make materials with ionic super conductivity? Part II
Author :
Ioffe, V.M.
Volume :
01
fYear :
2008
fDate :
23-25 Sept. 2008
Firstpage :
181
Lastpage :
182
Abstract :
The basic idea is that we try to find some materials in which bosonic ions with sufficiently small effective mass are used as charge carriers instead of Cooper´s pairs in order to provide high temperature ionic superconductivity. Ionic crystals LiCl, LiF, LiBr and LiI were considered with lithium isotope Li6. Calculations show that Bose condensation temperature for lithium ions in these crystals is of the order of 10-34 -10-43K. If, however, the crystal is compressed so that the wave functions of neighboring lithium ions are sufficiently overlapped, then Bose-condensation temperature of Li6-ions can be increased significantly. Our estimates show that compressing the crystals by 20-22% in all three directions one can raise the Bose-condensation temperature in all crystals considered to above room temperature. To realize materials with room temperature superconductivity in practice the use of molecular beam epitaxy is proposed for the formation of heterostructures from thin and thick layers of thought-fully-chosen composition.
Keywords :
Bose-Einstein condensation; high-temperature superconductors; lithium compounds; Bose condensation temperature; Cooper pairs; LiBr; LiCl; LiF; LiI; bosonic ions; charge carriers; heterostructure formation; ionic crystals; ionic superconductivity; lithium ion; molecular beam epitaxy; room temperature superconductivity; wave functions; Charge carriers; Conducting materials; Conductivity; Crystalline materials; Crystals; Effective mass; Lithium; Superconducting materials; Superconductivity; Temperature;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electronic Instrument Engineering, 2008. APEIE 2008. 9th International Conference on Actual Problems of
Conference_Location :
Novosibirsk
Print_ISBN :
978-1-4244-2825-0
Type :
conf
DOI :
10.1109/APEIE.2008.4897087
Filename :
4897087
Link To Document :
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