Ultrafast charge and spin excitations in the elusive terahertz regime of the electromagnetic spectrum play a pivotal role in condensed matter. The electric field of free-space terahertz pulses has provided a direct gateway to manipulating the motion of charges on the femtosecond timescale. Here, we complement this process by showing that the magnetic component of intense terahertz transients enables ultrafast control of the spin degree of freedom. Single-cycle terahertz pulses switch on and off coherent spin waves in antiferromagnetic NiO at frequencies as high as 1 THz. An optical probe pulse with a duration of 8 fs follows the terahertz-induced magnetic dynamics directly in the time domain and verifies that the terahertz field addresses s...
Two concepts of ultrafast spin control at THz frequencies are presented: Exploiting a coherent phono...
Efficient manipulation of magnetization at ultrashort timescales is of particular interest for futur...
In spin-based electronics, information is encoded by the spin state of electron bunches. Processing ...
Ultrafast charge and spin excitations in the elusive terahertz regime1, 2 of the electromagnetic spe...
Ultrashort pulses of intense THz radiation have been shown to represent a powerful and versatile too...
We demonstrated coherent control of spin precession motion due to the ferromagnetic resonance induce...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
As conventional electronics approaches its fundamental limits, novel concepts of ultrafast quantum c...
Ultrafast spin dynamics in magnetic materials is generally associated with ultrafast heating of the ...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
We present examples of how terahertz (THz) electromagnetic transients can be used to control spin pr...
Future information technology demands ultimately fast, low-loss quantum control. Intense light field...
Future information technologies, such as ultrafast data recording, quantum computation or spintronic...
Coherent terahertz control of magnetization dynamics is an area of current interest due to its great...
Two concepts of ultrafast spin control at THz frequencies are presented: Exploiting a coherent phono...
Efficient manipulation of magnetization at ultrashort timescales is of particular interest for futur...
In spin-based electronics, information is encoded by the spin state of electron bunches. Processing ...
Ultrafast charge and spin excitations in the elusive terahertz regime1, 2 of the electromagnetic spe...
Ultrashort pulses of intense THz radiation have been shown to represent a powerful and versatile too...
We demonstrated coherent control of spin precession motion due to the ferromagnetic resonance induce...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
As conventional electronics approaches its fundamental limits, novel concepts of ultrafast quantum c...
Ultrafast spin dynamics in magnetic materials is generally associated with ultrafast heating of the ...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
We present examples of how terahertz (THz) electromagnetic transients can be used to control spin pr...
Future information technology demands ultimately fast, low-loss quantum control. Intense light field...
Future information technologies, such as ultrafast data recording, quantum computation or spintronic...
Coherent terahertz control of magnetization dynamics is an area of current interest due to its great...
Two concepts of ultrafast spin control at THz frequencies are presented: Exploiting a coherent phono...
Efficient manipulation of magnetization at ultrashort timescales is of particular interest for futur...
In spin-based electronics, information is encoded by the spin state of electron bunches. Processing ...