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January 7, 2010Science728 citationsOpen Access

Quantum Criticality in an Ising Chain: Experimental Evidence for Emergent E 8 Symmetry

RCR. ColdeaClarendon CollegeDTD. M. TennantUniversity of Tennessee at KnoxvilleEWElisa M. WheelerInstitut Laue-Langevin

Key Points

  • The aim is to experimentally demonstrate the emergence of E8 symmetry in an Ising chain near its critical point.
  • Experimentally tuned CoNb2O6 ferromagnet using strong transverse magnetic fields near the critical point.
  • Observed spin excitations transitioning from pairs of kinks to spin-flips across the phase transition.
  • Analyzed spin dynamics and fine structure of low energy modes.
  • Spin dynamics revealed two sharp modes at low energies approaching the golden mean ratio.
  • Character of spin excitations changed significantly across the critical point.
  • Results provide experimental evidence supporting predictions of emergent E8 symmetry.

Abstract

Quantum phase transitions take place between distinct phases of matter at zero temperature. Near the transition point, exotic quantum symmetries can emerge that govern the excitation spectrum of the system. A symmetry described by the E8 Lie group with a spectrum of eight particles was long predicted to appear near the critical point of an Ising chain. We realize this system experimentally by using strong transverse magnetic fields to tune the quasi-one-dimensional Ising ferromagnet CoNb2O6 (cobalt niobate) through its critical point. Spin excitations are observed to change character from pairs of kinks in the ordered phase to spin-flips in the paramagnetic phase. Just below the critical field, the spin dynamics shows a fine structure with two sharp modes at low energies, in a ratio that approaches the golden mean predicted for the first two meson particles of the E8 spectrum. Our results demonstrate the power of symmetry to describe complex quantum behaviors.

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Cite This Study

Coldea et al. (2010) studied this question.

synapsesocial.com/papers/6a0d4005cb02dac523a4d1a8https://doi.org/10.1126/science.1180085
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