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Anomalous Metallic States and the Superconductor-Insulator Transition

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  1. Xinyang Zhang, Alexander Palevski, Aharon Kapitulnik, "Anomalous metals: from "failed superconductor" to "failed insulator"," PNAS 119, e2202496119 (2022).

  2. Bar Hen, Victor Shelukhin, Eran Greenberg, Gregory Kh. Rozenberg, Aharon Kapitulnik and Alexander Palevski, "Superconductor-insulator transitions in three-dimensional indium-oxide at high pressures," J. Phys. Condens. Matter 34, 135402 (2022).

  3. Xinyang Zhang, Bar Hen, Alexander Palevski, Aharon Kapitulnik, "Robust anomalous metallic states and vestiges of self-duality in two-dimensional granular In composites," npj Quantum Mater. 6, 30 (2021).

  4. Bar Hen, Xinyang Zhang, Victor Shelukhin, Aharon Kapitulnik, Alexander Palevski, "Superconductor-Insulator Transition and the Crossover to Non-Equilibrium in two-dimensional Indium - Indium-Oxide composite," PNAS 118 (2), e2015970118 (2021).

  5. Aharon Kapitulnik, Steven A Kivelson, Boris Spivak, "Anomalous metals--failed superconductors," Rev. Mod. Phys. 91, 011002 (2017).

  6. Nicholas P. Breznay and Aharon Kapitulnik, “Particle-hole Symmetry Reveals Failed Superconductivity in the Metallic Phase of Two-Dimensional Superconducting Films,” Science Advances 3 (9), e1700612 (2017).

  7. Nicholas P. Breznay, Myles A. Steiner, Steven A. Kivelson, Aharon Kapitulnik, "Self-Duality and a  Hall Insulator phase near the Superconductor-to-Insulator Transition in indium-oxide films," Proceedings of the National Academy of Science of America, 113, 280 (2016). 

  8. W. Siemons, M.A. Steiner, G. Koster, D.A.H. Blank, M.R. Beasley, and A. Kapitulnik,  “Preparation and properties of amorphous MgB2/MgO superstructures: Model disordered superconductor,” Phys. Rev. B 77 (2008), 174506.

  9. Myles A. Steiner, Nicholas Breznay, and Aharon Kapitulnik, “Approach to a superconductor-to-Bose-insulator transition in disordered films,” Phys. Rev. B 77 (2008), 212501.

  10. M. A. Steiner, G. Boebinger, and A. Kapitulnik, “Possible Field-Tuned SIT in High-Tc Superconductors: Implications for Pairing at High Magnetic Fields,” Phys. Rev. Lett. 94 (2005), 107008/1-4.

  11. N. Mason and A. Kapitulnik, “Superconductor-Insulator Transition in a Capacitively Coupled Dissipative Environment,” Phys. Rev. B 65 (2002), 220505/1-4.

  12. Nadya Mason and Aharon Kapitulnik, “True Superconductivity in a 2D “Superconducting-Insulating” System,” Phys. Rev. B 64 (2001), 060504.

  13. A. Kapitulnik, N. Mason, S. Kivelson, and S. Chakravarti, “Effects of dissipation on quantum phase transitions,” Phys. Rev. B 63 (2001), 125322.

  14. N. Mason and A. Kapitulnik, “Dissipation effects on the superconductor-insulator transition in 2-D superconductors,” Phys. Rev. Lett. 82 (1999), 5341-5344.

  15. Efrat Shimshoni, Assa Auerbach  and Aharon Kapitulnik, “Transport Through Quantum Melts,” Phys. Rev. Lett. 80 (1998), 3352.

  16. D. Ephron, A. Yazdani, A. Kapitulnik, and M.R. Beasley, “Observation of Quantum Dissipation in the Vortex State of a Highly Disordered Superconducting Thin Film,” Phys. Rev. Lett. 76 (1996), 1529-1532.

  17. Ali Yazdani and Aharon Kapitulnik, “Superconducting-Insulating Transition in Two Dimensional a-MoGe Thin Films,” Phys. Rev. Lett. 74 (1995), 3037-3040.

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