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authorPrefetch2023-01-01 16:40:56 +0100
committerPrefetch2023-01-01 17:02:29 +0100
commitb1a9b1b9b2f04efd6dc39bd2a02c544d34d1259c (patch)
tree1fd87919deee17e58f8ad19c09abd54bd4a70886 /source/know/concept/dispersive-broadening
parent1d700ab734aa9b6711eb31796beb25cb7659d8e0 (diff)
Change license, add Makefile, add image caching control
Diffstat (limited to 'source/know/concept/dispersive-broadening')
-rw-r--r--source/know/concept/dispersive-broadening/index.md3
1 files changed, 2 insertions, 1 deletions
diff --git a/source/know/concept/dispersive-broadening/index.md b/source/know/concept/dispersive-broadening/index.md
index 9642737..55a31e6 100644
--- a/source/know/concept/dispersive-broadening/index.md
+++ b/source/know/concept/dispersive-broadening/index.md
@@ -62,7 +62,8 @@ This phenomenon is illustrated below for our example of a Gaussian pulse
with parameter values $$T_0 = 1\:\mathrm{ps}$$, $$P_0 = 1\:\mathrm{kW}$$,
$$\beta_2 = -10 \:\mathrm{ps}^2/\mathrm{m}$$ and $$\gamma = 0$$:
-{% include image.html file="simulation-full.png" width="100%" alt="Dispersive broadening simulation results" %}
+{% include image.html file="simulation-full.png" width="100%"
+ alt="Dispersive broadening simulation results" %}
The **instantaneous frequency** $$\omega_\mathrm{GVD}(z, t)$$,
which describes the dominant angular frequency at a given point in the time domain,