A scanning tunneling microscope for spectroscopic imaging below 90 mK in magnetic fields up to 17.5 T
arXiv:1807.08989 · doi:10.1063/1.5049619
Abstract
We describe the development and performance of an ultra-high vacuum scanning tunneling microscope working under combined extreme conditions of ultra-low temperatures and high magnetic fields. We combined a top-loading dilution refrigerator and a standard bucket dewar with a bottom-loading superconducting magnet to achieve 4.5 days operating time, which is long enough to perform various spectroscopic-imaging measurements. To bring the effective electron temperature closer to the mixing-chamber temperature, we paid particular attention to filtering out the radio-frequency noise, as well as enhancing the thermal link between the microscope unit and the mixing chamber. We estimated the lowest effective electron temperature to be below 90 mK by measuring the superconducting-gap spectrum of aluminum. We confirmed the long-term stability of the spectroscopic-imaging measurement by visualizing superconducting vortices in the cuprate superconductor BiSrCaCuO.
12 pages, 10 figures
References in corpus (6)
- Three-Dimensional Charge Density Wave Order in YBa2Cu3O6.67 at High Magnetic Fields
- Local Measurements of the Superconducting Pairing Symmetry in CuxBi2Se3
- Field tunable spin density wave phases in Sr3Ru2O7
- Construction of a Versatile Ultra-Low Temperature Scanning Tunneling Microscope
- Design and performance of an ultra-high vacuum spin-polarized scanning tunneling microscope operating at 30 mK and in a vector magnetic field
- Room-temperature tunnel current amplifier and experimental setup for high resolution electronic spectroscopy in millikelvin STM experiments
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