Novel magnetic field tuning of quantum spin excitations in a weakly coupled 1/2 Heisenberg spin chain as seen from NMR
arXiv:1812.06261 · doi:10.1103/PhysRevB.100.125126
Abstract
We report our NMR study of the spin excitations in the quasi-one dimensional (1D) quantum magnet CHNHCu(HCOO) lying in the 1D-3D dimensional crossover regime with Dzyaloshinskii-Moriya(DM) interactions. Above , the spinon excitation is observed from the constant at low temperatures contributed from the staggered spin susceptibility. At low temperatures well below , the begins to flatten out under weak magnetic fields. With the increasing field intensity, tends to show a power-law temperature dependence gradually, with the index increasing from zero to , and finally , which are the respective typical characteristic for the dominating two-magnon Raman process and three-magnon scattering contributions to the nuclear relaxation in a conventional 3D magnet. A possible physical mechanism for this novel magnetic field tuning of quantum spin excitations related with the enhanced effective staggered field created by the DM interactions under magnetic field is discussed.
8 pages, 5 figures