We describe the formation of charge- and spin-density patterns induced by spin-selective photoexcitations of interacting fermionic systems in the presence of a microstructure. As an example, we consider a one-dimensional Hubbard-like system with a periodic magnetic microstructure, which has a uniform charge distribution in its ground state, and in which a long-lived charge-density pattern is induced by the spin-selective photoexcitation. Using tensor-network methods, we study the full quantum dynamics in the presence of electron-electron interactions and identify doublons as the main decay channel for the induced charge pattern. Our setup is compared to the optically induced spin transfer (OISTR) mechanism, in which ultrafast optically indu...
Due to the recent experimental progress, tunable spin-orbit (SO) interactions represent ideal candid...
We describe a general technique that allows one to induce and control strong interaction between spi...
One of the outstanding contemporary challenges in condensed matter physics is to understand the dyna...
Photo-induced electronic dynamics in strongly correlated electron system with spin-charge coupling a...
The Hubbard model contains only the essential ingredients to describe the behavior of strongly inter...
Dynamics for localized spin-wave packets (localized magnons) are studied in a two-component ultra-co...
We derive and discuss an experimentally realistic model describing ultracold atoms in an optical lat...
Laser pulses induce spin-selective charge flow that we show to generate dramatic changes in the magn...
Obtaining a microscopic understanding of the dynamics in strongly correlated electronic systems has ...
Spin and charge are two fundamental degrees of freedom in strongly correlated electron systems. In t...
We consider the nonequilibrium dynamics of an interacting spin-1/2 fermion gas in a one-dimensional ...
We propose and analyze a theoretical model of ultrafast light-induced magnetization dynamics in syst...
Materials with strong correlations are prone to spin and charge instabilities, driven by Coulomb, ma...
Photoinduced spin-charge dynamics in strongly correlated electron systems is studied based on an ext...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
Due to the recent experimental progress, tunable spin-orbit (SO) interactions represent ideal candid...
We describe a general technique that allows one to induce and control strong interaction between spi...
One of the outstanding contemporary challenges in condensed matter physics is to understand the dyna...
Photo-induced electronic dynamics in strongly correlated electron system with spin-charge coupling a...
The Hubbard model contains only the essential ingredients to describe the behavior of strongly inter...
Dynamics for localized spin-wave packets (localized magnons) are studied in a two-component ultra-co...
We derive and discuss an experimentally realistic model describing ultracold atoms in an optical lat...
Laser pulses induce spin-selective charge flow that we show to generate dramatic changes in the magn...
Obtaining a microscopic understanding of the dynamics in strongly correlated electronic systems has ...
Spin and charge are two fundamental degrees of freedom in strongly correlated electron systems. In t...
We consider the nonequilibrium dynamics of an interacting spin-1/2 fermion gas in a one-dimensional ...
We propose and analyze a theoretical model of ultrafast light-induced magnetization dynamics in syst...
Materials with strong correlations are prone to spin and charge instabilities, driven by Coulomb, ma...
Photoinduced spin-charge dynamics in strongly correlated electron systems is studied based on an ext...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2017.Cataloged from PD...
Due to the recent experimental progress, tunable spin-orbit (SO) interactions represent ideal candid...
We describe a general technique that allows one to induce and control strong interaction between spi...
One of the outstanding contemporary challenges in condensed matter physics is to understand the dyna...