Closed cycle He3−He4 dilution cryostats became the platform of choice in quantum sciences in the era of helium shortage. However, in many experiments, the mechanical vibrations induced by the pulsed cryocoolers present a significant drawback reflected both in electronic and mechanical noises. Here, we present a hybrid dilution cryostat platform; we have automated a commercial closed-cycle system to operate on a cryocooler or on a liquid helium battery. We implemented a scanning SQUID microscope in the hybrid dilution refrigerator. In this work we show the design of the hybrid setup and how its operation eliminates vibration artefacts in magnetic imaging.
@article{arxiv.2302.05766,
title = {Versatile Millikelvin Hybrid Cooling Platform for Superconductivity Research},
author = {Jacob Franklin and Joshua Bedard and Ilya Sochnikov},
journal= {arXiv preprint arXiv:2302.05766},
year = {2023}
}