Physical Review Letters · 2009 · 91 citations · 13 references
Superconducting MaterialEngineeringSemiconductorsDetailed Annealing ConditionsSuperconductivityQuantum MaterialsAdvanced DopingHigh Tc SuperconductorsSuperconducting DevicesLow-temperature SuperconductivityMaterials ScienceGallium-doped Germanium LayerHigh-tc SuperconductivityPhysicsSemiconductor MaterialHigh-temperature SuperconductivityApplied PhysicsCondensed Matter PhysicsAmbient PressureQuantum Superconductivity
We demonstrate that the third elemental group-IV semiconductor, germanium, exhibits superconductivity at ambient pressure. Using advanced doping and annealing techniques of state-of-the-art semiconductor processing, we have fabricated a highly Ga-doped Ge (GeratioGa) layer in near-intrinsic Ge. Depending on the detailed annealing conditions, we demonstrate that superconductivity can be generated and tailored in the doped semiconducting Ge host at temperatures as high as 0.5 K. Critical-field measurements reveal the quasi-two-dimensional character of superconductivity in the approximately 60 nm thick GeratioGa layer. The Cooper-pair density in GeratioGa appears to be exceptionally low.
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Upper Limit for the Critical Field in Hard Superconductors
A. M. Clogston · Physical Review Letters · 1962 · 1.8K citations
V. A. Sidorov, E. D. Bauer, N. N. Melnik et al. · Nature · 2004 · 1.1K citations · Full text
Superconducting Material, High-tc Superconductivity, Engineering +10
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E. Bustarret, C. Marcenat, P. Achatz et al. · Nature · 2006 · 264 citations
Superconducting Material, High-tc Superconductivity, Engineering +5