Spin waves interference from rising and falling edges of electrical pulses
arXiv:1208.1836 · doi:10.1063/1.3643156
Abstract
The authors have investigated the effect of the electrical pulse width of input excitations on the generated spin waves in a NiFe strip using pulse inductive time domain measurements. The authors have shown that the spin waves resulting from the rising- and the falling-edges of input excitation pulses interfere either constructively or destructively, and have provided conditions for obtaining spin wave packets with maximum intensity at different bias conditions.
References in corpus (2)
Cited by in corpus (6)
- An Introduction to Spin Wave Computing
- Spin wave nonreciprocity for logic device applications
- Nonreciprocity engineering in magnetostatic spin waves
- Interference-mediated intensity modulation of spin waves
- Detection of domain wall eigenfrequency in infinity-shaped magnetic nanostructures
- Spin wave non-reciprocity and beating in permalloy by time-resolved magneto-optical Kerr effect