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The pair of lowest-Q data points were severely attenuated due to large reduction of scattering volumes since the Bragg angles for these reflections 3.9° and 5.9°, respectively, were very close to the miscut angle estimated to be 3.5°. Similar systematic reductions have also been observed in earlier measurements on (formula presented) (Ref. 32) and (formula presented) (Ref. 25). In both of these cases the samples were cut and polished by conventional means. In contrast, no such systematic reductions of the intensities were observed in (formula presented) compound where an as-grown surface was used (Ref. 10). A simple geometric correction was applied to the two low-Q data points, noting that detected scattered photons come from within one absorption length of the exit face. In the present case this amounts to a reduction of factors of 15 and 5, respectively, for the lowest-Q data points compared to the case with no asymmetry
-
The pair of lowest-Q data points were severely attenuated due to large reduction of scattering volumes since the Bragg angles for these reflections 3.9° and 5.9°, respectively, were very close to the miscut angle estimated to be 3.5°. Similar systematic reductions have also been observed in earlier measurements on (formula presented) (Ref. 32) and (formula presented) (Ref. 25). In both of these cases the samples were cut and polished by conventional means. In contrast, no such systematic reductions of the intensities were observed in (formula presented) compound where an as-grown surface was used (Ref. 10). A simple geometric correction was applied to the two low-Q data points, noting that detected scattered photons come from within one absorption length of the exit face. In the present case this amounts to a reduction of factors of 15 and 5, respectively, for the lowest-Q data points compared to the case with no asymmetry.
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