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Tanatar MA, Spyrison N, Cho K, Blomberg EC, Tan GT, Dai PC, et al. Evolution of normal and superconducting properties of single crystals of Na(1-delta)FeAs upon interaction with environment. Phys Rev B. 2012;85:014510. Abstract
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Spyrison N, Tanatar MA, Cho K, Song Y, Dai PC, Zhang CL, et al. Environmental stability and anisotropic resistivity of Co-doped Na1-delta Fe1-xCoxAs. Phys Rev B. 2012;86:144528. Abstract
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Cho K, Tanatar MA, Kim H, Straszheim WE, Ni N, Cava RJ, et al. Doping-dependent superconducting gap anisotropy in the two-dimensional pnictide Ca(10)(Pt(3)As(8)) (Fe(1-x)Pt(x))(2)As(2) (5). Phys Rev B. 2012;85:020504. Abstract
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Cho K, Tanatar MA, Spyrison N, Kim H, Song Y, Dai PC, et al. Doping-dependent anisotropic superconducting gap in Na1-delta(Fe1-xCox)As from London penetration depth. Phys Rev B. 2012;86:020508. Abstract
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Cho K, Kim H, Tanatar MA, Prozorov R. Reply to "Comment on 'Precision global measurements of London penetration depth in FeTe0.58Se0.42'". Phys Rev B. 2012;86:066502. Abstract
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Hashimoto K, Cho K, Shibauchi T, Kasahara S, Mizukami Y, Katsumata R, et al. A Sharp Peak of the Zero-Temperature Penetration Depth at Optimal Composition in BaFe2(As1-xPx)(2). Science. 2012;336:1554-7. Abstract
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Cho K, Kim H, Tanatar MA, Song YJ, Kwon YS, Coniglio WA, et al. Anisotropic upper critical field and possible Fulde-Ferrel-Larkin-Ovchinnikov state in the stoichiometric pnictide superconductor LiFeAs. Phys Rev B. 2011;83:060502. Abstract
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Cho K, Kim H, Tanatar MA, Hu J, Qian B, Mao ZQ, et al. Precision global measurements of London penetration depth in FeTe(0.58)Se(0.42). Phys Rev B. 2011;84:174502. Abstract
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Tanatar MA, Reid JP, de Cotret SR, Doiron-Leyraud N, Laliberte F, Hassinger E, et al. Isotropic three-dimensional gap in the iron arsenide superconductor LiFeAs from directional heat transport measurements. Physical Review B. 2011;84:054507. Abstract
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Hu R, Cho K, Kim H, Hodovanets H, Straszheim WE, Tanatar MA, et al. Anisotropic magnetism, resistivity, London penetration depth and magneto-optical imaging of superconducting K0.80Fe1.76Se2 single crystals. Supercond Sci TechSupercond Sci Tech. 2011;24:065006. Abstract
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