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1. Ultra-thin Epitaxial MgB2 on SiC: Substrate Surface Polarity Dependent Properties

3. Final Report on Energy Frontier Research Centers: Center for the Computational Design of Functional Layered Materials (CCDM) August 1, 2014 - July 31, 2018; Center for Complex Materials from First Principles (CCM) August 1, 2018 - July 31, 2021

5. Surface- and strain-tuning of the optical dielectric function in epitaxially grown CaMnO3

7. Atomically precise interfaces from non-stoichiometric deposition

10. Fully Band Resolved Scattering Rate in MgB2 Revealed by Nonlinear Hall Effect and Magnetoresistance Measurements

12. I-V characteristics of the vortex state in MgB2 thin films

16. MgB<inline-formula><tex-math notation="LaTeX">$_{2}$</tex-math></inline-formula> Coating by HPCVD for 1.3-GHz Superconducting RF Cavities

22. Anisotropic High Upper Critical Field in Ultrathin MgB2 Film

23. Epitaxial Ultrathin MgB2 Films on C-Terminated 6H-SiC(<inline-formula><tex-math notation="LaTeX">${\text{000}}\bar{{\text{1}}}$</tex-math></inline-formula>) Substrates Grown by HPCVD

28. Epitaxial Ultrathin MgB 2 Films on C-Terminated 6H–SiC ($000\bar{1}$) Substrates Grown by HPCVD.

30. Visualization of defect induced in-gap states in monolayer MoS2.

32. Proximity-Induced Superconductivity in Monolayer MoS2

33. Far- and Mid-IR Heterodyne Detectors Based on MgB2

41. Strain-Engineered Oxygen Vacancies in CaMnO₃ Thin Films

42. Impact of substitutional and interstitial carbon defects on lattice parameters in MgB2.

43. Strain-Engineered Oxygen Vacancies in CaMnO3 Thin Films

47. Erratum: Inter-Layer Coupling Induced Valence Band Edge Shift in Mono- to Few-Layer MoS2

48. Strain-Engineered Oxygen Vacancies in CaMnO3 Thin Films

49. Inter-Layer Coupling Induced Valence Band Edge Shift in Mono- to Few-Layer MoS2

50. High-Operating-Temperature Superconducting Nanowire Single Photon Detectors based on Magnesium Diboride

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