Understanding the interaction between intense terahertz (THz) electromagnetic fields and spin systems has been gaining importance in modern spintronics research as a unique pathway to realize ultrafast macroscopic magnetization control. In this work, we used intense THz pulses with pulse energies in the order of 10 mJ/pulse generated from the terahertz free electron laser (THz-FEL) to irradiate the ferromagnetic domains of ErFeO3 single crystal. It was found that the domain shape can be locally reconfigured by irradiating the THz - FEL pulses near the domain boundary. Observed domain reconfiguration mechanism can be phenomenologically understood by the combination of depinning effect and the entropic force due to local thermal gradient exer...
A nearly single cycle intense terahertz (THz) pulse with peak electric and magnetic fields of 0.5 MV...
THz time domain spectroscopy (TDS) with picosecond temporal resolution is employed to investigate th...
Ultrafast demagnetisation of ferromagnets by ultrafast laser pulses provides a unique window for the...
We show that femtosecond laser pulse excitation of the orthoferrite ErFeO3 triggers pico- and subpic...
Using the examples of laser-induced spin-reorientation phase transitions in TmFeO3 and ErFeO3 orthof...
Coherent terahertz control of magnetization dynamics is an area of current interest due to its great...
Contains fulltext : 135729.pdf (publisher's version ) (Open Access
Ultrashort pulses of intense THz radiation have been shown to represent a powerful and versatile too...
Future information technologies, such as ultrafast data recording, quantum computation or spintronic...
We present an ab initio time-dependent density functional theory study of the ultrafast demagnetizat...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
The microscopic origin of ultrafast modification of the ratio between the symmetric (J) and antisymm...
Contains fulltext : 91992.pdf (publisher's version ) (Open Access
Ultrafast spin dynamics in magnetic materials is generally associated with ultrafast heating of the ...
It is found that single-cycle THz electromagnetic fields efficiently excite a GHz spin resonance mod...
A nearly single cycle intense terahertz (THz) pulse with peak electric and magnetic fields of 0.5 MV...
THz time domain spectroscopy (TDS) with picosecond temporal resolution is employed to investigate th...
Ultrafast demagnetisation of ferromagnets by ultrafast laser pulses provides a unique window for the...
We show that femtosecond laser pulse excitation of the orthoferrite ErFeO3 triggers pico- and subpic...
Using the examples of laser-induced spin-reorientation phase transitions in TmFeO3 and ErFeO3 orthof...
Coherent terahertz control of magnetization dynamics is an area of current interest due to its great...
Contains fulltext : 135729.pdf (publisher's version ) (Open Access
Ultrashort pulses of intense THz radiation have been shown to represent a powerful and versatile too...
Future information technologies, such as ultrafast data recording, quantum computation or spintronic...
We present an ab initio time-dependent density functional theory study of the ultrafast demagnetizat...
Future information technology demands ever-faster, low-loss quantum control. Intense light fields ha...
The microscopic origin of ultrafast modification of the ratio between the symmetric (J) and antisymm...
Contains fulltext : 91992.pdf (publisher's version ) (Open Access
Ultrafast spin dynamics in magnetic materials is generally associated with ultrafast heating of the ...
It is found that single-cycle THz electromagnetic fields efficiently excite a GHz spin resonance mod...
A nearly single cycle intense terahertz (THz) pulse with peak electric and magnetic fields of 0.5 MV...
THz time domain spectroscopy (TDS) with picosecond temporal resolution is employed to investigate th...
Ultrafast demagnetisation of ferromagnets by ultrafast laser pulses provides a unique window for the...