Effective field theory for the SO(n) bilinear-biquadratic spin chain

Apr, 2011
4 pages
Published in:
  • Phys.Rev.Lett. 107 (2011) 077204
e-Print:

Citations per year

2011201420172020202301234
Abstract: (arXiv)
We present a low-energy effective field theory to describe the SO(n) bilinear-biquadratic spin chain. We start with n=6 and construct the effective theory by using six Majorana fermions. After determining various correlation functions we characterize the phases and establish the relation between the effective theories for SO(6) and SO(5). Together with the known results for n=3 and 4, a reduction mechanism is proposed to understand the ground state for arbitrary SO(n). Also, we provide a generalization of the Lieb-Schultz-Mattis theorem for SO(n). The implications of our results for entanglement and correlation functions are discussed.
Note:
  • 5 pages, 1 figure, published version
  • 03.65.Fd
  • 75.10.Jm
  • 75.10.Pq
  • spin: chain
  • SO(N)
  • fermion: Majorana
  • effective field theory
  • correlation function
  • ground state
  • entanglement