It is well-recognized in condensed matter physics that structural and magnetic properties are intimately connected; thus controlling structure has been a successful route to controlling material properties. Extending the methodologies to high frequency modulation provides a route to controlled, bidirectional modification to material properties, expanding the range of material functionality and opening new possibilities for future developments in fields as disparate as magnetic control, spintronics, and magnonics. Ultrafast optical techniques provide one manner in which elastic and magnetic dynamics can be controlled in a material, since ultrafast pulses of light are known to excite elastic deformations while also modifying the magnetic prop...
5000 years ago cuneiform was imprinted on clay tablets in order to store information in Mesopotamia....
We explore the feasibility of exciting localized spin-wave modes in ferromagnetic nanostructures usi...
We explore the feasibility of exciting localized spin-wave modes in ferromagnetic nanostructures usi...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
Using spatial light interference of ultrafast laser pulses, we generate a lateral modulation in the ...
Using spatial light interference of ultrafast laser pulses, we generate a lateral modulation in the ...
Using spatial light interference of ultrafast laser pulses, we generate a lateral modulation in the ...
Using spatial light interference of ultrafast laser pulses, we generate a lateral modulation in the ...
Novel material properties can be realized by designing waves ’ dispersion relations in arti-ficial c...
Spin dynamics controlled by magnetoelastic coupling and applied electric fields might play a vital r...
Spin dynamics controlled by magnetoelastic coupling and applied electric fields might play a vital r...
5000 years ago cuneiform was imprinted on clay tablets in order to store information in Mesopotamia....
5000 years ago cuneiform was imprinted on clay tablets in order to store information in Mesopotamia....
We explore the feasibility of exciting localized spin-wave modes in ferromagnetic nanostructures usi...
We explore the feasibility of exciting localized spin-wave modes in ferromagnetic nanostructures usi...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
It is well-recognized in condensed matter physics that structural and magnetic properties are intima...
Using spatial light interference of ultrafast laser pulses, we generate a lateral modulation in the ...
Using spatial light interference of ultrafast laser pulses, we generate a lateral modulation in the ...
Using spatial light interference of ultrafast laser pulses, we generate a lateral modulation in the ...
Using spatial light interference of ultrafast laser pulses, we generate a lateral modulation in the ...
Novel material properties can be realized by designing waves ’ dispersion relations in arti-ficial c...
Spin dynamics controlled by magnetoelastic coupling and applied electric fields might play a vital r...
Spin dynamics controlled by magnetoelastic coupling and applied electric fields might play a vital r...
5000 years ago cuneiform was imprinted on clay tablets in order to store information in Mesopotamia....
5000 years ago cuneiform was imprinted on clay tablets in order to store information in Mesopotamia....
We explore the feasibility of exciting localized spin-wave modes in ferromagnetic nanostructures usi...
We explore the feasibility of exciting localized spin-wave modes in ferromagnetic nanostructures usi...