A millikelvin scanning tunneling microscope in ultra-high vacuum with adiabatic demagnetization refrigeration
arXiv:2103.11945 · doi:10.1063/5.0050532
Abstract
We present the design and performance of an ultra-high vacuum (UHV) scanning tunneling microscope (STM) that uses adiabatic demagnetization of electron magnetic moments for controlling its operating temperature in the range between 30 mK and 1 K with the accuracy of up to 7 K. The time available for STM experiments at 50 mK is longer than 20 h, at 100 mK about 40 h. The single-shot adiabatic demagnetization refrigerator (ADR) can be regenerated automatically within 7 hours while keeping the STM temperature below 5 K. The whole setup is located in a vibrationally isolated, electromagnetically shielded laboratory with no mechanical pumping lines penetrating through its isolation walls. The 1K pot of the ADR cryostat can be operated silently for more than 20 days in a single-shot mode using a custom-built high-capacity cryopump. A high degree of vibrational decoupling together with the use of a specially-designed minimalistic STM head provides an outstanding mechanical stability, demonstrated by the tunneling current noise, STM imaging, and scanning tunneling spectroscopy measurements all performed on atomically clean Al(100) surface.
12 pages, 15 figures
References in corpus (7)
- Zero-energy vortex bound state in the superconducting topological surface state of Fe(Se,Te)
- Local Measurements of the Superconducting Pairing Symmetry in CuxBi2Se3
- Dirac Surface States and Nature of Superconductivity in Noncentrosymmetric BiPd
- Construction of a Versatile Ultra-Low Temperature Scanning Tunneling Microscope
- A modular ultra-high vacuum millikelvin scanning tunneling microscope
- Localized Distributions of Quasi Two-Dimensional Electronic States near Defects Artificially Created at Graphite Surfaces in Magnetic Fields
- Room-temperature tunnel current amplifier and experimental setup for high resolution electronic spectroscopy in millikelvin STM experiments
Cited by in corpus (4)
- Utilizing frustration in Gd- and Yb-based oxides for milli-Kelvin adiabatic demagnetization refrigeration
- How cold is the junction of a millikelvin scanning tunnelling microscope?
- Performance benchmarking of an ultra-low vibration laboratory to host a commercial millikelvin scanning tunnelling microscope
- Electron spin secluded inside a bottom-up assembled standing metal-molecule nanostructure