Over the recent years coherent, time-periodic modulation has been established as a versatile tool for realizing novel Hamiltonians. Using this approach, known as Floquet engineering, we experimentally realize a long-ranged, anisotropic Heisenberg model with tunable interactions in a trapped ion quantum simulator. We demonstrate that the spectrum of the model contains not only single magnon excitations but also composite magnon bound states. For the long-range interactions with the experimentally realized power-law exponent, the group velocity of magnons is unbounded. Nonetheless, for sufficiently strong interactions we observe bound states of these unconventional magnons which possess a non-diverging group velocity. By measuring the configu...
Continuous variable entanglement between magnon modes in Heisenberg antiferromagnets with Dzyaloshin...
Makihara T, Hayashida K, Noe Ii GT, et al. Ultrastrong magnon-magnon coupling dominated by antireson...
The recent advance of techniques in controlling ultra-cold gases in optical lattice provides a ideal...
Magnon excitations play an important role in understanding quantum magnetism and magnon bound states...
Strong mutual interaction which correlates elementary excitations of quantum matter plays a key role...
The existence of bound states of elementary spin waves (magnons) in one-dimensional quantum magnets ...
The existence of bound states of elementary spin waves (magnons) in one-dimensional quantum magnets ...
Frustrated magnets gain a lot of interest due to promise of states with exotic properties, such as s...
Frustrated magnets gain a lot of interest due to promise of states with exotic properties, such as s...
Despite nearly a century of study of the S = 1/2 Heisenberg model on the square lattice, there is st...
A proposed paradigm for out-of-equilibrium quantum systems is that an analog of quantum phase transi...
Constantly increasing experimental possibilities with strongly correlated systems of ultracold atoms...
Constantly increasing experimental possibilities with strongly correlated systems of ultracold atoms...
14 pags., 4 figs., 3 apps.We introduce a theoretical scheme for the analog quantum simulation of lon...
We derive relaxation times for magnon-magnon interactions in antiferromagnetic spin configurations w...
Continuous variable entanglement between magnon modes in Heisenberg antiferromagnets with Dzyaloshin...
Makihara T, Hayashida K, Noe Ii GT, et al. Ultrastrong magnon-magnon coupling dominated by antireson...
The recent advance of techniques in controlling ultra-cold gases in optical lattice provides a ideal...
Magnon excitations play an important role in understanding quantum magnetism and magnon bound states...
Strong mutual interaction which correlates elementary excitations of quantum matter plays a key role...
The existence of bound states of elementary spin waves (magnons) in one-dimensional quantum magnets ...
The existence of bound states of elementary spin waves (magnons) in one-dimensional quantum magnets ...
Frustrated magnets gain a lot of interest due to promise of states with exotic properties, such as s...
Frustrated magnets gain a lot of interest due to promise of states with exotic properties, such as s...
Despite nearly a century of study of the S = 1/2 Heisenberg model on the square lattice, there is st...
A proposed paradigm for out-of-equilibrium quantum systems is that an analog of quantum phase transi...
Constantly increasing experimental possibilities with strongly correlated systems of ultracold atoms...
Constantly increasing experimental possibilities with strongly correlated systems of ultracold atoms...
14 pags., 4 figs., 3 apps.We introduce a theoretical scheme for the analog quantum simulation of lon...
We derive relaxation times for magnon-magnon interactions in antiferromagnetic spin configurations w...
Continuous variable entanglement between magnon modes in Heisenberg antiferromagnets with Dzyaloshin...
Makihara T, Hayashida K, Noe Ii GT, et al. Ultrastrong magnon-magnon coupling dominated by antireson...
The recent advance of techniques in controlling ultra-cold gases in optical lattice provides a ideal...