Terahertz magnetic fields with amplitudes of up to 0.4 Tesla drive magnon resonances in nickel oxide while the induced dynamics is recorded by femtosecond magneto-optical probing. We observe distinct spin-mediated optical nonlinearities, including oscillations at the second harmonic of the 1 THz magnon mode. The latter originate from coherent dynamics of the longitudinal component of the antiferromagnetic order parameter, which are probed by magneto-optical effects of second order in the spin deflection. These observations allow us to dynamically disentangle electronic from lattice-related contributions to magnetic linear birefringence and dichroism-information so far only accessible by ultrafast THz spin control. The nonlinearities discuss...
This Ph.D. thesis focuses on studying magnetization dynamics of magnetic materials on sub-picosecond...
We report on measurements of magnetic field and temperature dependence of antiferromagnetic resonanc...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
Terahertz magnetic fields with amplitudes of up to 0.4 Tesla drive magnon resonances in nickel oxide...
Ultrashort pulses of intense THz radiation have been shown to represent a powerful and versatile too...
This thesis is dedicated to improving the understanding of nonlinear electromagnetic probes of solid...
Future information technologies, such as ultrafast data recording, quantum computation or spintronic...
Table-top sources of intense multi-terahertz (THz) pulses have opened the door to studies of extreme...
Antiferromagnetic oxides have attracted increasing attention for their outstanding peculiarities in ...
Ultrafast charge and spin excitations in the elusive terahertz regime1, 2 of the electromagnetic spe...
A nearly single cycle intense terahertz (THz) pulse with peak electric and magnetic fields of 0.5 MV...
A laser stimulus at terahertz (THz) frequency is expected to offer superior control over magnetizati...
The recent thrust in ultrafast magnetization dynamics aims at extending spintronic functionalities t...
Antiferromagnetic (AFM) materials possess a well-recognized potential for ultrafast data processing ...
This Ph.D. thesis focuses on studying magnetization dynamics of magnetic materials on sub-picosecond...
We report on measurements of magnetic field and temperature dependence of antiferromagnetic resonanc...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
Terahertz magnetic fields with amplitudes of up to 0.4 Tesla drive magnon resonances in nickel oxide...
Ultrashort pulses of intense THz radiation have been shown to represent a powerful and versatile too...
This thesis is dedicated to improving the understanding of nonlinear electromagnetic probes of solid...
Future information technologies, such as ultrafast data recording, quantum computation or spintronic...
Table-top sources of intense multi-terahertz (THz) pulses have opened the door to studies of extreme...
Antiferromagnetic oxides have attracted increasing attention for their outstanding peculiarities in ...
Ultrafast charge and spin excitations in the elusive terahertz regime1, 2 of the electromagnetic spe...
A nearly single cycle intense terahertz (THz) pulse with peak electric and magnetic fields of 0.5 MV...
A laser stimulus at terahertz (THz) frequency is expected to offer superior control over magnetizati...
The recent thrust in ultrafast magnetization dynamics aims at extending spintronic functionalities t...
Antiferromagnetic (AFM) materials possess a well-recognized potential for ultrafast data processing ...
This Ph.D. thesis focuses on studying magnetization dynamics of magnetic materials on sub-picosecond...
We report on measurements of magnetic field and temperature dependence of antiferromagnetic resonanc...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...