One-dimensional physics in K2Cr3As3
Mar 27, 2017
Mar 27, 2017
The recently-discovered material K2Cr3As3 has a structure consisting of parallel Cr-As chains, which gives an opportunity to study the exotic behaviour which is predicted to occur when electrons are effectively confined to move only in one-dimension. Its peculiar properties, having an unusual metallic state before superconducting at 7 K, have made researchers curious about how best to describe the conduction electrons in the system.
In a recent publication in Physical Review Letters, scientists at Diamond Light Source, in collaboration with partners at ISIS Neutron & Muon Source as well as UK and international universities, used the Angle-Resolved PhotoEmission Spectroscopy (ARPES) beamline (I05) to perform the first successful angle-resolved photoemission spectroscopy measurements of K2Cr3As3. They detected a characteristic signature of a Tomonoga-Luttinger liquid, which is the theoretical model for electrons in a one-dimensional crystal. These measurements confirm that the one-dimensional picture holds true, which makes the appearance of superconductivity in the system even more intriguing.
Figure 1: The crystal structure of K2Cr3As3.
Watson MD et al. Multiband One-Dimensional Electronic Structure and Spectroscopic Signature of Tomonaga-Luttinger Liquid Behavior in K2Cr3As3. Phys. Rev. Lett. 118, 097002 (2017). DOI: 10.1103/PhysRevLett.118.097002
Diamond Light Source is the UK's national synchrotron science facility, located at the Harwell Science and Innovation Campus in Oxfordshire.
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