Barrett O. Wells
Professor & Associate Dean/Liberal Arts and Sciences

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Department of Applied Physics, Stanford University, Stanford, CA 94305
1990
B O Wells, I Lindau, W E Spicer
Research Type: Journal Article

The gold/high temperature superconductor interface; metallicity of the near surface region and a search for the proximity effect
1991
D B Mitzi, others, R J Bartlett, R S List, B O Wells, A J Arko, C B Eom, W E Spicer, D S Dessau, C G Olson, Z-X Shen
Research Type: Journal Article

Electronic structure of NiO: Correlation and band effects
1991
others, R S List, O Jepsen, B O Wells, J C Huang, D S Dessau, Z-X Shen, C K Shih, R Barttlet, A J Arko, Fulvio Parmigiani
Research Type: Journal Article

Electronic Structure and the Superconducting Gap of Bi 2 Sr 2 CaCu 2 O 8+ \delta
1991
D S Dessau, Z-X Shen, B O Wells
Research Type: Journal Article

Evidence of chemical-potential shift with hole doping in Bi sub 2 Sr sub 2 CaCu sub 2 O sub 8+. delta
1991
L Lombado, C G Olson, R S List, D S Dessau, Z Shen, B O Wells, D B Mitzi, A J Arko
Research Type: Journal Article

Anomalous spectral weight transfer at the superconducting transition of Bi 2 Sr 2 CaCu 2 O 8+ \delta
1991
W E Spicer, A Kapitulnik, A J Arko, D B Mitzi, B O Wells, D S Dessau, R S List, Z-X Shen
Research Type: Journal Article

Spectral weight changes at the superconducting transition of Bi2Sr2CaCu2O8+ \delta
1991
W E Spicer, B O Wells, D S Dessau, A J Arko, Z X Shen
Research Type: Journal Article

Angle resolved photoemission of NiO (001)
1991
R S List, D S Dessau, Fulvio Parmigiani, R Barttlet, Z-X Shen, A J Arko, B O Wells, O Jepsen
Research Type: Journal Article

Anomalous spectral weight transfer at the superconducting transition of Bi sub 2 Sr sub 2 CaCu sub 2 O sub 8+. delta
1991
B O Wells, D B Mitzi, R S List, D S Dessau, A J Arko, Z Shen, W E Spicer, A Kapitulnik
Research Type: Journal Article

Search for a proximity effect induced gap in gold/high T c junctions
1991
A J Arko, Z-X Shen, R S List, A Kapitulnik, D B Mitzi, C B Eom, D S Dessau, C G Olson, others, W E Spicer, B O Wells
Research Type: Journal Article

Evidence of chemical-potential shift with hole doping in Bi 2 Sr 2 CaCu 2 O 8+ \delta
1991
Lou Lombado, R S List, C G Olson, B O Wells, A J Arko, D B Mitzi, D S Dessau, Z-X Shen
Research Type: Journal Article

Reply to ??????Anomalous enhancement of Bi 2 Sr 2 CaCu 2 O 8 Fermi-level states near the O 2s threshold??????
1991
W E Spicer, B O Wells, D S Dessau, Z-X Shen
Research Type: Journal Article

Analysis of the gap in high-temperature superconductors using photoemission spectroscopy
1992
Barrett Otis Wells
Research Type: Book

Electronic structure of single crystal C sub 60
1992
X Yang, J Terry, J Wu, D S Marshall, P Pianetta, D S Dessau, D M King, R Cao, Z X Shen, I Lindau, others
Research Type: Journal Article

Analysis of the gap in high-temperature superconductors using photoemission spectroscopy(Ph. D. Thesis)
1992
BARRETTOTIS WELLS
Research Type: Journal Article

Nature of the high-binding-energy dip in the low-temperature photoemission spectra of Bi 2 Sr 2 CaCu 2 O 8+ \delta
1992
D B Mitzi, A Kapitulnik, L W Lombardo, A J Arko, D S Dessau, D M King, Z-X Shen, B O Wells, W E Spicer
Research Type: Journal Article

Photoemission Study of Single Crystal C60
1992
others, D M King, J Wu, R Cao, J Terry, D S Marshall, D S Dessau, X Yang, I Lindau, Z-X Shen, P Pianetfa
Research Type: Journal Article

Nature of the high-binding-energy dip in the low-temperature photoemission spectra of Bi sub 2 Sr sub 2 CaCu sub 2 O sub 8+. delta
1992
Z Shen, D B Mitzi, A J Arko, D M King, B O Wells, D S Dessau, L W Lombardo, A Kapitulnik, W E Spicer
Research Type: Journal Article

Evidence for k-dependent, in-plane anisotropy of the superconducting gap in Bi 2 Sr 2 CaCu 2 O 8+ \delta
1992
W E Spicer, A Kapitulnik, D S Dessau, L Lombardo, B O Wells, D B Mitzi, Z X Shen, A J Arko
Research Type: Journal Article

2. SUPERCONDUCTING MATERIALS THRUST
1992
L Antognazza, D Fork, R H Hammond, T Umezawa, others, J M Triscone, Z Durusoy, R Taber, J Kucera, W Y Lee, E S Hellman
Research Type: Journal Article