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author | Blaise Thompson <blaise@untzag.com> | 2018-04-05 08:11:15 -0500 |
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committer | Blaise Thompson <blaise@untzag.com> | 2018-04-05 08:11:15 -0500 |
commit | 57cc38f603b5145185d67b36bb3138cdaa5b4cf9 (patch) | |
tree | ed11dc8bbbaec5454b953bc3baecb397a13dacbb /abstract.tex | |
parent | 5c0cd9524716e91bfce3386cf13f29236c56568e (diff) | |
parent | ba8235a76c56f6fba6eb9919f3a64054f17fe79d (diff) |
Merge branch 'jcw'
Diffstat (limited to 'abstract.tex')
-rw-r--r-- | abstract.tex | 7 |
1 files changed, 4 insertions, 3 deletions
diff --git a/abstract.tex b/abstract.tex index dd08aa0..2c9b4ed 100644 --- a/abstract.tex +++ b/abstract.tex @@ -5,9 +5,10 @@ Coherent multidimensional spectroscopy (CMDS) encompasses a family of experimental strategies involving the nonlinear interaction between electric fields and a material under investigation. % -This approach has several unique capabilities: 1. resolving congested states [CITE KLUG], 2. -extracting spectra that would otherwise be selection-rule disslowed [CITE BOYLE], 3. resolving -fully coherent dyanmics [CITE], 4. measuring coupling [CITE], and 5. resolving ultrafast dynamics +This approach has several unique capabilities: 1. resolving congested states [CITE KLUG and % JCW Zhao and Wright-JACS], +2. extracting spectra that would otherwise be selection-rule disslowed [CITE BOYLE], 3. resolving +fully coherent dyanmics [CITE % JCW Pakoulev and Wright], +4. measuring coupling [CITE], and 5. resolving ultrafast dynamics [CITE]. % CMDS can be collected in the frequency or the time domain, and each approach has advantages and |