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Making superconductors thinner can change how they accommodate magnetic fields

What happens when a superconductor becomes so thin that electrons can no longer behave as if they were moving through an ordinary three-dimensional piece of metal? This question has been at the center of my recent work on quantum…

Phys.org Quantum Physics

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Sep 2, 2026 at 9:40 PM UTC · Updated 39 minutes ago · 1 min read

Making superconductors thinner can change how they accommodate magnetic fields
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What happens when a superconductor becomes so thin that electrons can no longer behave as if they were moving through an ordinary three-dimensional piece of metal? This question has been at the center of my recent work on quantum confinement in metallic films. Over the past few years, I have been developing this line of theory with my colleague Giovanni Ummarino at Politecnico di Torino. Our initial goal was to understand something rather concrete: Why does shrinking the thickness of a superconducting film change the temperature at which superconductivity appears?

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Originally reported by Phys.org Quantum Physics

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