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Items: 1 to 20 of 304

1.

Energy gap evolution across the superconductivity dome in single crystals of (Ba1-x K x )Fe2As2.

Cho K, Kończykowski M, Teknowijoyo S, Tanatar MA, Liu Y, Lograsso TA, Straszheim WE, Mishra V, Maiti S, Hirschfeld PJ, Prozorov R.

Sci Adv. 2016 Sep 30;2(9):e1600807. eCollection 2016 Sep.

2.

Universal doping evolution of the superconducting gap anisotropy in single crystals of electron-doped Ba(Fe1-x Rh x )2As2 from London penetration depth measurements.

Kim H, Tanatar MA, Martin C, Blomberg EC, Ni N, Bud'ko SL, Canfield PC, Prozorov R.

J Phys Condens Matter. 2018 Jun 6;30(22):225602. doi: 10.1088/1361-648X/aabef9. Epub 2018 Apr 18.

PMID:
29667604
3.

Electronic origin of high-temperature superconductivity in single-layer FeSe superconductor.

Liu D, Zhang W, Mou D, He J, Ou YB, Wang QY, Li Z, Wang L, Zhao L, He S, Peng Y, Liu X, Chen C, Yu L, Liu G, Dong X, Zhang J, Chen C, Xu Z, Hu J, Chen X, Ma X, Xue Q, Zhou XJ.

Nat Commun. 2012 Jul 3;3:931. doi: 10.1038/ncomms1946.

PMID:
22760630
4.

Doping dependent evolution of magnetism and superconductivity in Eu(1-x)K(x)Fe2As2 (x = 0-1) and temperature dependence of the lower critical field H(c1).

Anupam, Paulose PL, Ramakrishnan S, Hossain Z.

J Phys Condens Matter. 2011 Nov 16;23(45):455702. doi: 10.1088/0953-8984/23/45/455702. Epub 2011 Oct 21.

PMID:
22019495
5.

Disorder-induced topological change of the superconducting gap structure in iron pnictides.

Mizukami Y, Konczykowski M, Kawamoto Y, Kurata S, Kasahara S, Hashimoto K, Mishra V, Kreisel A, Wang Y, Hirschfeld PJ, Matsuda Y, Shibauchi T.

Nat Commun. 2014 Nov 28;5:5657. doi: 10.1038/ncomms6657.

PMID:
25430419
6.

Dynamic competition between spin-density wave order and superconductivity in underdoped Ba(1-x)K(x)Fe2As2.

Yi M, Zhang Y, Liu ZK, Ding X, Chu JH, Kemper AF, Plonka N, Moritz B, Hashimoto M, Mo SK, Hussain Z, Devereaux TP, Fisher IR, Wen HH, Shen ZX, Lu DH.

Nat Commun. 2014 Apr 25;5:3711. doi: 10.1038/ncomms4711.

PMID:
24762657
7.

Unconventional superconductivity in Ba(0.6)K(0.4)Fe2As2 from inelastic neutron scattering.

Christianson AD, Goremychkin EA, Osborn R, Rosenkranz S, Lumsden MD, Malliakas CD, Todorov IS, Claus H, Chung DY, Kanatzidis MG, Bewley RI, Guidi T.

Nature. 2008 Dec 18;456(7224):930-2. doi: 10.1038/nature07625.

PMID:
19092931
8.

Antiferroic electronic structure in the nonmagnetic superconducting state of the iron-based superconductors.

Shimojima T, Malaeb W, Nakamura A, Kondo T, Kihou K, Lee CH, Iyo A, Eisaki H, Ishida S, Nakajima M, Uchida SI, Ohgushi K, Ishizaka K, Shin S.

Sci Adv. 2017 Aug 25;3(8):e1700466. doi: 10.1126/sciadv.1700466. eCollection 2017 Aug.

9.

Nodeless superconducting gap in A(x)Fe2Se2 (A=K,Cs) revealed by angle-resolved photoemission spectroscopy.

Zhang Y, Yang LX, Xu M, Ye ZR, Chen F, He C, Xu HC, Jiang J, Xie BP, Ying JJ, Wang XF, Chen XH, Hu JP, Matsunami M, Kimura S, Feng DL.

Nat Mater. 2011 Apr;10(4):273-7. doi: 10.1038/nmat2981. Epub 2011 Feb 27.

PMID:
21358648
10.

Superconductivity at 38 K in the iron arsenide (Ba1-xKx)Fe2As2.

Rotter M, Tegel M, Johrendt D.

Phys Rev Lett. 2008 Sep 5;101(10):107006. Epub 2008 Sep 5.

PMID:
18851249
11.

Superconductivity on Hole-Doping Side of (La0.5-xNa0.5+x)Fe2As2.

Iyo A, Kawashima K, Ishida S, Fujihisa H, Gotoh Y, Eisaki H, Yoshida Y.

J Am Chem Soc. 2018 Jan 10;140(1):369-374. doi: 10.1021/jacs.7b10656. Epub 2017 Dec 27.

PMID:
29280633
12.

Nonexponential London penetration depth of FeAs-based superconducting RFeAsO(0.9)F(0.1) (R = La, Nd) single crystals.

Martin C, Tillman ME, Kim H, Tanatar MA, Kim SK, Kreyssig A, Gordon RT, Vannette MD, Nandi S, Kogan VG, Bud'ko SL, Canfield PC, Goldman AI, Prozorov R.

Phys Rev Lett. 2009 Jun 19;102(24):247002. Epub 2009 Jun 18.

PMID:
19659038
13.

Nodal to nodeless superconducting energy-gap structure change concomitant with fermi-surface reconstruction in the heavy-fermion compound CeCoIn(5).

Kim H, Tanatar MA, Flint R, Petrovic C, Hu R, White BD, Lum IK, Maple MB, Prozorov R.

Phys Rev Lett. 2015 Jan 16;114(2):027003. Epub 2015 Jan 15.

PMID:
25635560
14.

Full-Gap Superconductivity Robust against Disorder in Heavy-Fermion CeCu_{2}Si_{2}.

Takenaka T, Mizukami Y, Wilcox JA, Konczykowski M, Seiro S, Geibel C, Tokiwa Y, Kasahara Y, Putzke C, Matsuda Y, Carrington A, Shibauchi T.

Phys Rev Lett. 2017 Aug 18;119(7):077001. doi: 10.1103/PhysRevLett.119.077001. Epub 2017 Aug 18.

PMID:
28949698
15.

Enhanced superconductivity of Ba0.5K0.5Fe2As2 under surface potassium dosing.

Miao J, Niu X, Jiang J, Peng R, Xie B, Chen F, Xu H, Feng D.

J Phys Condens Matter. 2018 Nov 14;30(45):455601. doi: 10.1088/1361-648X/aae423.

PMID:
30251965
16.

Structural and magnetic phase diagram of CeFeAsO(1- x)F(x) and its relation to high-temperature superconductivity.

Zhao J, Huang Q, de la Cruz C, Li S, Lynn JW, Chen Y, Green MA, Chen GF, Li G, Li Z, Luo JL, Wang NL, Dai P.

Nat Mater. 2008 Dec;7(12):953-9. doi: 10.1038/nmat2315. Epub 2008 Oct 26.

PMID:
18953342
17.

The electronic phase diagram of the LaO(1-x)F(x)FeAs superconductor.

Luetkens H, Klauss HH, Kraken M, Litterst FJ, Dellmann T, Klingeler R, Hess C, Khasanov R, Amato A, Baines C, Kosmala M, Schumann OJ, Braden M, Hamann-Borrero J, Leps N, Kondrat A, Behr G, Werner J, Büchner B.

Nat Mater. 2009 Apr;8(4):305-9. doi: 10.1038/nmat2397. Epub 2009 Feb 22.

PMID:
19234445
18.

Two-gap superconductivity in Ba1-xKxFe2As2: a complementary study of the magnetic penetration depth by muon-spin rotation and angle-resolved photoemission.

Khasanov R, Evtushinsky DV, Amato A, Klauss HH, Luetkens H, Niedermayer Ch, Büchner B, Sun GL, Lin CT, Park JT, Inosov DS, Hinkov V.

Phys Rev Lett. 2009 May 8;102(18):187005. Epub 2009 May 6.

PMID:
19518904
19.

Superconductivity and physical properties of CaPd2Ge2 single crystals.

Anand VK, Kim H, Tanatar MA, Prozorov R, Johnston DC.

J Phys Condens Matter. 2014 Oct 8;26(40):405702. doi: 10.1088/0953-8984/26/40/405702. Epub 2014 Sep 16.

PMID:
25224494
20.

Effects of disorder induced by heavy-ion irradiation on (Ba1-x K x )Fe2As2 single crystals, within the three-band Eliashberg s± wave model.

Ghigo G, Ummarino GA, Gozzelino L, Gerbaldo R, Laviano F, Torsello D, Tamegai T.

Sci Rep. 2017 Oct 12;7(1):13029. doi: 10.1038/s41598-017-13303-5.

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