Print Email Facebook Twitter Platform for Measurements of the Casimir Force between Two Superconductors Title Platform for Measurements of the Casimir Force between Two Superconductors Author Norte, R.A. (TU Delft QN/Groeblacher Lab; TU Delft Dynamics of Micro and Nano Systems; Kavli institute of nanoscience Delft) Forsch, M. (TU Delft QN/Groeblacher Lab; Kavli institute of nanoscience Delft) Wallucks, A. (TU Delft QN/Groeblacher Lab; Kavli institute of nanoscience Delft) Marinkovic, I. (TU Delft QN/Groeblacher Lab; Kavli institute of nanoscience Delft) Groeblacher, S. (TU Delft QN/Groeblacher Lab; Kavli institute of nanoscience Delft) Date 2018-07-20 Abstract Several experimental demonstrations of the Casimir force between two closely spaced bodies have been realized over the past two decades. Extending the theory to incorporate the behavior of the force between two superconducting films close to their transition temperature has resulted in competing predictions. To date, no experiment exists that can test these theories, partly due to the difficulty in aligning two superconductors in close proximity, while still allowing for a temperature-independent readout of the arising force between them. Here we present an on-chip platform based on an optomechanical cavity in combination with a grounded superconducting capacitor, which overcomes these challenges and opens up the possibility to probe modifications to the Casimir effect between two closely spaced, freestanding superconductors as they transition into a superconducting state. We also perform preliminary force measurements that demonstrate the capability of these devices to probe the interplay between two widely measured quantum effects: Casimir forces and superconductivity. To reference this document use: http://resolver.tudelft.nl/uuid:a1a05cfe-9214-410c-9dbd-217cccffed63 DOI https://doi.org/10.1103/PhysRevLett.121.030405 ISSN 0031-9007 Source Physical Review Letters, 121 (3) Part of collection Institutional Repository Document type journal article Rights © 2018 R.A. Norte, M. Forsch, A. Wallucks, I. Marinkovic, S. Groeblacher Files PDF PhysRevLett.121.030405_1.pdf 3.81 MB Close viewer /islandora/object/uuid:a1a05cfe-9214-410c-9dbd-217cccffed63/datastream/OBJ/view