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1 files changed, 3 insertions, 3 deletions
diff --git a/active_correction/chapter.tex b/active_correction/chapter.tex
index d3028fe..e996898 100644
--- a/active_correction/chapter.tex
+++ b/active_correction/chapter.tex
@@ -44,7 +44,7 @@ Section \ref{act:sec:chop} addresses (dual) chopping, used to actively subtract
scatter and unwanted nonlinear outputs. %
Chopping can only account for intensity level (additive) artifacts. %
Fibrillation is the opposite of chopping, as it can only account for amplitude level
-\emph{iterference} effects. %
+\emph{interference} effects. %
Section \ref{act:sec:chop} also addresses fibrillation. %
\section{Spectral delay correction} \label{act:sec:sdc} % =========================================
@@ -66,7 +66,7 @@ SDC was first implemented by Schuyler Kain within his COLORS acquisition softwar
COLORS' implementation was hardcoded for one particular OPA / delay configuration---it wasn't until
PyCMDS that fully arbitrary SDC became possible through the autonomic system (see
\autoref{acq:sec:autonomic}). %
-Erin Boyle ``backported'' similar functionality into to ps\_control, although her implementation
+Erin Boyle ``backported'' similar functionality into ps\_control, although her implementation
allowed only for a simple, first order linear correction. %
Sometimes, spectral delay can be corrected for after-the-fact. %
@@ -125,7 +125,7 @@ The curvature in the plot is due entirely to SDC, as sapphire is entirely nonres
Using WrightTools, PyCMDS fits each slice to find the delay that gives maximum signal. %
It then passes those separate fits through a spline to guess the ultimate SDC dependence. %
PyCMDS makes a best guess in regions where there is not enough signal to determine the appropriate
-delay, like in at 800 nm in the left hand plot. %
+delay, like at 800 nm in the left hand plot. %
The magnitude of the corrections are roughly 30 fs in this particular experiment: not large, but
enough to change signal levels by roughly a factor of 2. %
In other cases SDC is as much as 200 fs. %