Publications

2007
Gomes, K, et al.Gap Distributions and Spatial Variation of Electronic States in Superconducting and Pseudogap States of Bi2Sr2Ca2CuO8+3”. Physica C 212 (2007): , 212, 460-462. Web. Publisher's Version
Kitchen, D, et al.Hole-Mediated Interactions of Mn Acceptors on GaAs (110)”. Journal of Applied Physics 101.09G515 (2007). Web. Publisher's Version
Quay, C. H. L., et al.Transport Properties of Carbon Nanotube C60 Peapods”. Physical Review B 76.073404 (2007). Web. Publisher's Version
Jura, MP, et al.Unexpected Features of Branched Flow Through High Mobility Two-Dimensional Electron Gases”. Nature Physics 3 (2007): , 3, 841. Web. Publisher's Version
Gomes, K., et al.Visualizing Pair Formation on the Atomic Scale in the High-Tc Superconductor Bi2Sr2CaCu2O8+3”. Nature 447 (2007): , 447, 569. Web. Publisher's Version
2006
Kitchen, D, et al.Atom-by-Atom Substitution of Mn in GaAs and Visualization of Their Hole-Mediated Interactions”. Nature 442 (2006). Web. Publisher's Version

Cover Story

Yazdani, A.Lean and Mean Superconductivity”. Nature Physics 2 (2006): , 2, 151-152. Web. Publisher's Version
2005
Kitchen, D, A Richardella, and A Yazdani. “Spatial Structure of a Single Mn Impurity State on GaAs (110) Surface”. Journal of Superconductivity: Incorporating Novel Magnetism 18 (2005): , 18, 23. Web. Publisher's Version
2004
Vershinin, M., et al.Electron Standing Waves on the Surface of Bi2Sr2Ca2CuO8+3”. Physica C 408-410 (2004): , 408-410, 764-767. Web. Publisher's Version
Misra, S., et al.Failure of Scattering Interference in the Pseudogap State of Cuprate Superconductors”. Physical Review B 70.220503 (2004). Web. Publisher's Version
Vershinin, M., et al.Local Ordering in the Pseudogap State of the High-Tc Superconductor Bi2Sr2Ca2CuO8+3”. Science 303 (2004): , 303, 1995. Web. Publisher's Version
Chen, H-D, et al.Pair Density Wave in the Pseudogap State of High Temperature Superconductors”. Physical Review Letters 93.187002 (2004). Web. Publisher's Version
2003
Yazdani, A, and EJ Mele. “Probing Electronic Structure of Nanotube Peapods with the STM”. Applied Physics 76 (2003): , 76, 469-474. Web. Publisher's Version

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