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authorJaron Kent-Dobias <jaron@kent-dobias.com>2024-10-29 14:49:46 +0100
committerJaron Kent-Dobias <jaron@kent-dobias.com>2024-10-29 14:49:46 +0100
commit77cf86b193f24630890990e105fe40730d353fd0 (patch)
tree01063757ec3de6af398d45c26343e2fb42e7c5a9
parentd944977b38915e8fe51ef1cca68b95d0a8107217 (diff)
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Fixed spelling mistake.
-rw-r--r--marginal.tex2
1 files changed, 1 insertions, 1 deletions
diff --git a/marginal.tex b/marginal.tex
index 30d3dce..7a81a74 100644
--- a/marginal.tex
+++ b/marginal.tex
@@ -1245,7 +1245,7 @@ asymptotic behavior of the overlaps. These take the form
$q^{ij}_0=q^{ij}_d-y^{ij}_0\beta^{-1}-z^{ij}_0\beta^{-2}$. Notice that in this case, the asymptotic behavior of the
off-diagonal elements is to approach the value of the diagonal rather than to approach one.
We also require $\tilde q^{ij}_d=q^{ij}_d-\tilde y^{ij}_d\beta^{-1}-\tilde
-z^{ij}_d\beta^{-2}$, i.e., that the tilde diagonal terms also approache the
+z^{ij}_d\beta^{-2}$, i.e., that the tilde diagonal terms also approach the
same diagonal value as the untilde terms, but with potentially different rates.
As before, in order for the logarithmic term to stay finite, there are necessary