Emergence of nontrivial magnetic excitations in a spin-liquid state of kagomé volborthite.

نویسندگان

  • Daiki Watanabe
  • Kaori Sugii
  • Masaaki Shimozawa
  • Yoshitaka Suzuki
  • Takeshi Yajima
  • Hajime Ishikawa
  • Zenji Hiroi
  • Takasada Shibauchi
  • Yuji Matsuda
  • Minoru Yamashita
چکیده

When quantum fluctuations destroy underlying long-range ordered states, novel quantum states emerge. Spin-liquid (SL) states of frustrated quantum antiferromagnets, in which highly correlated spins fluctuate down to very low temperatures, are prominent examples of such quantum states. SL states often exhibit exotic physical properties, but the precise nature of the elementary excitations behind such phenomena remains entirely elusive. Here, we use thermal Hall measurements that can capture the unexplored property of the elementary excitations in SL states, and report the observation of anomalous excitations that may unveil the unique features of the SL state. Our principal finding is a negative thermal Hall conductivity [Formula: see text] which the charge-neutral spin excitations in a gapless SL state of the 2D kagomé insulator volborthite Cu3V2O7(OH)2[Formula: see text]2H2O exhibit, in much the same way in which charged electrons show the conventional electric Hall effect. We find that [Formula: see text] is absent in the high-temperature paramagnetic state and develops upon entering the SL state in accordance with the growth of the short-range spin correlations, demonstrating that [Formula: see text] is a key signature of the elementary excitation formed in the SL state. These results suggest the emergence of nontrivial elementary excitations in the gapless SL state which feel the presence of fictitious magnetic flux, whose effective Lorentz force is found to be less than 1/100 of the force experienced by free electrons.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

The Ground State of the Spin-12 Kagomé Lattice Antiferromagnet: Neutron Scattering Studies of the Zinc-Paratacamite Mineral Family

The magnetic properties of the geometrically frustrated quantum magnets clinoatacamite, Cu2(OH)3Cl, and herbertsmithite, ZnCu3(OH)6Cl2, are studied by means of neutron scattering measurements as well as specific heat, susceptibility, and magnetization measurements. These materials are studied to investigate the nature of the ground state of the spin2 kagomé lattice antiferromagnet, as such a sy...

متن کامل

2 2 D ec 2 00 4 Ground state and low - lying excitations of the spin - 1 / 2 XXZ model on the kagomé lattice atmagnetization 1 / 3

We study the ground state and low-lying excitations of the S = 1/2 XXZ antiferromagnet on the kagomé lattice at magnetization one third of the saturation. An exponential number of non-magnetic states is found below a magnetic gap. The non-magnetic excitations also have a gap above the ground state, but it is much smaller than the magnetic gap. This ground state corresponds to an ordered pattern...

متن کامل

Effective Field Theory of Chiral Spin Liquid between Ordered Phases in Kagomé Antiferromagnet

In this work, we first derive the low-energy effective theory of kagomé (isotropic) Heisenberg antiferromagnet around its ordered ground states found numerically and show that quantum fluctuations induced by further neighbor spin exchanges are equally strong as those from first neighbor.Second, we use a chiral order parameter theory to argue for the occurrence of finite temperature chiral symme...

متن کامل

Magnetic excitations in a new anisotropicKagomé antiferromagnet

The Nd-langasite compound contains planes of magnetic Nd ions on a lattice topologically equivalent to a kagomé net. The magnetic susceptibility does not reveal any signature of long-range ordering down to 2 K but rather a correlated paramagnetism with significant antiferromagnetic interactions between the Nd and a single-ion anisotropy due to crystal field effect. Inelastic neutron scattering ...

متن کامل

Atomic quantum gases in Kagomé lattices.

We demonstrate the possibility of creating and controlling an ideal and trimerized optical Kagomé lattice, and study the low temperature physics of various atomic gases in such lattices. In the trimerized Kagomé lattice, a Bose gas exhibits a Mott transition with fractional filling factors, whereas a spinless interacting Fermi gas at 2/3 filling behaves as a quantum magnet on a triangular latti...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:
  • Proceedings of the National Academy of Sciences of the United States of America

دوره 113 31  شماره 

صفحات  -

تاریخ انتشار 2016