Dispersive Wave: Difference between revisions
Jump to navigation
Jump to search
(Created page with "Since the phase velocity is <math>\frac{\omega}{k}</math>, if <math>\omega(k) = c k</math> for some scalar <math>c</math>, then the phase velocity is <math...") |
No edit summary |
||
Line 1: | Line 1: | ||
Since the [ | Since the [https://belize.math.uwaterloo.ca/mediawiki/index.php/Glossary#Phase_Velocity] is <math>\frac{\omega}{k}</math>, if <math>\omega(k) = c k</math> for some scalar <math>c</math>, then the phase velocity is <math>c</math>, independent of <math>k</math>, so that all waves, no matter their wavelength, travel at the same speed. But if the dispersion relation is some other function of <math>k</math>, waves of different wavelengths travel at different speeds, leading to dispersion. |
Revision as of 09:51, 19 May 2015
Since the [1] is , if for some scalar , then the phase velocity is , independent of , so that all waves, no matter their wavelength, travel at the same speed. But if the dispersion relation is some other function of , waves of different wavelengths travel at different speeds, leading to dispersion.