We report on measurements of magnetic field and temperature dependence of antiferromagnetic resonances in the prototypical antiferromagnet NiO. The frequencies of the magnetic resonances in the vicinity of 1 THz have been determined in the time-domain via time-resolved Faraday measurements after selective excitation by narrow-band superradiant terahertz (THz) pulses at temperatures down to 3K and in magnetic fields up to 10 T. The measurements reveal two antiferromagnetic resonance modes, which can be distinguished by their characteristic magnetic field dependencies. The nature of the two modes is discussed by comparison to an eight-sublattice antiferromagnetic model, which includes superexchange between the next-nearest-neighbor Ni spins, ...
Magnetic proximity effect between two magnetic layers is an important focus of research for discover...
We have studied the lowest magnetic excitation of Ni\(_{1-x}\)Co\(_x\)O mixed crystals for 0.94 \(\l...
A laser stimulus at terahertz (THz) frequency is expected to offer superior control over magnetizati...
We report on measurements of magnetic field and temperature dependence of antiferromagnetic resonanc...
Antiferromagnetic oxides have attracted increasing attention for their outstanding peculiarities in ...
This dissertation reports the investigation into temperature dependence of magnon and phonon energie...
NiO is a prototypical antiferromagnet with a characteristic resonance frequency in the THz range. Fr...
A comparative study at the ambient temperature of the ferromagnetic resonance (FMR) spectra of Ni/Zn...
Contains fulltext : 161534.pdf (publisher's version ) (Open Access
We study the spin Hall magnetoresistance (SMR) in epitaxial γ–Fe2O3/NiO(001)/Pt stacks, as a functio...
We report the observation of magnon spin currents generated by the spin Seebeck effect (SSE) in a bu...
We report on spin Hall magnetoresistance (SMR) measurements of Pt Hall bars on antiferromagnetic NiO...
Insulating antiferromagnets have recently emerged as efficient and robust conductors of spin current...
This Ph.D. thesis focuses on studying magnetization dynamics of magnetic materials on sub-picosecond...
Ultrashort pulses of intense THz radiation have been shown to represent a powerful and versatile too...
Magnetic proximity effect between two magnetic layers is an important focus of research for discover...
We have studied the lowest magnetic excitation of Ni\(_{1-x}\)Co\(_x\)O mixed crystals for 0.94 \(\l...
A laser stimulus at terahertz (THz) frequency is expected to offer superior control over magnetizati...
We report on measurements of magnetic field and temperature dependence of antiferromagnetic resonanc...
Antiferromagnetic oxides have attracted increasing attention for their outstanding peculiarities in ...
This dissertation reports the investigation into temperature dependence of magnon and phonon energie...
NiO is a prototypical antiferromagnet with a characteristic resonance frequency in the THz range. Fr...
A comparative study at the ambient temperature of the ferromagnetic resonance (FMR) spectra of Ni/Zn...
Contains fulltext : 161534.pdf (publisher's version ) (Open Access
We study the spin Hall magnetoresistance (SMR) in epitaxial γ–Fe2O3/NiO(001)/Pt stacks, as a functio...
We report the observation of magnon spin currents generated by the spin Seebeck effect (SSE) in a bu...
We report on spin Hall magnetoresistance (SMR) measurements of Pt Hall bars on antiferromagnetic NiO...
Insulating antiferromagnets have recently emerged as efficient and robust conductors of spin current...
This Ph.D. thesis focuses on studying magnetization dynamics of magnetic materials on sub-picosecond...
Ultrashort pulses of intense THz radiation have been shown to represent a powerful and versatile too...
Magnetic proximity effect between two magnetic layers is an important focus of research for discover...
We have studied the lowest magnetic excitation of Ni\(_{1-x}\)Co\(_x\)O mixed crystals for 0.94 \(\l...
A laser stimulus at terahertz (THz) frequency is expected to offer superior control over magnetizati...