The strongest interaction between microscopic spins in magnetic materials is the exchange interaction $J_{ex}$. Therefore, ultrafast control of$J_{ex}$ holds the promise to control spins on ultimately fast timescales. We demonstrate that time-periodic modulation of the electronicstructure by electric fields can be used to reversibly control $J_{ex}$ on ultrafast timescales in extended antiferromagnetic Mott insulators. In the regime of weak driving strength, we find that $J_{ex}$ can be enhanced and reduced for frequencies below and above the Mott gap,respectively. Moreover, for strong driving strength, even the sign of $J_{ex}$ can be reversed and we show that this causes time reversal of the associated quantum spin dynamics. These results...
Light enables the ultrafast, direct, and nonthermal control of the exchange and Dzyaloshinskii-Moriy...
Motivated by cold atom and ultra-fast pump-probe experiments we study the melting of long-range anti...
Quantum mechanical superexchange interactions form the basis of quantum magnetism in strongly correl...
The strongest interaction between microscopic spins in magnetic materials is the exchange interactio...
The strongest interaction between microscopic spins in magnetic materials is the exchange interactio...
The strongest interaction between microscopic spins in magnetic materials is the exchange interactio...
We investigate how fast and how effective photocarrier excitation can modify the exchange interactio...
We investigate how fast and how effective photocarrier excitation can modify the exchange interactio...
We investigate how fast and how effective photocarrier excitation can modify the exchange interactio...
The exchange interaction determines the ordering of microscopic spins in magnetic materials. While o...
In order to have a better understanding of ultrafast electrical control of exchange interactions in...
All-optical helicity-dependent manipulations of magnetism have attracted broad attention in the cont...
All-optical helicity-dependent manipulations of magnetism have attracted broad attention in the cont...
Motivated by cold atom and ultra-fast pump-probe experiments we study the melting of long-range anti...
Light enables ultrafast, direct and nonthermal control of the exchange and Dzyaloshinskii-Moriya int...
Light enables the ultrafast, direct, and nonthermal control of the exchange and Dzyaloshinskii-Moriy...
Motivated by cold atom and ultra-fast pump-probe experiments we study the melting of long-range anti...
Quantum mechanical superexchange interactions form the basis of quantum magnetism in strongly correl...
The strongest interaction between microscopic spins in magnetic materials is the exchange interactio...
The strongest interaction between microscopic spins in magnetic materials is the exchange interactio...
The strongest interaction between microscopic spins in magnetic materials is the exchange interactio...
We investigate how fast and how effective photocarrier excitation can modify the exchange interactio...
We investigate how fast and how effective photocarrier excitation can modify the exchange interactio...
We investigate how fast and how effective photocarrier excitation can modify the exchange interactio...
The exchange interaction determines the ordering of microscopic spins in magnetic materials. While o...
In order to have a better understanding of ultrafast electrical control of exchange interactions in...
All-optical helicity-dependent manipulations of magnetism have attracted broad attention in the cont...
All-optical helicity-dependent manipulations of magnetism have attracted broad attention in the cont...
Motivated by cold atom and ultra-fast pump-probe experiments we study the melting of long-range anti...
Light enables ultrafast, direct and nonthermal control of the exchange and Dzyaloshinskii-Moriya int...
Light enables the ultrafast, direct, and nonthermal control of the exchange and Dzyaloshinskii-Moriy...
Motivated by cold atom and ultra-fast pump-probe experiments we study the melting of long-range anti...
Quantum mechanical superexchange interactions form the basis of quantum magnetism in strongly correl...