Determination of the Absolute Intensities of Spectral Lines of the 12С2H4 Molecule

2018 ◽  
Vol 61 (6) ◽  
pp. 1074-1078
Author(s):  
Yu. S. Aslapovskaya ◽  
N. I. Raspopova
2021 ◽  
Vol 51 (8) ◽  
pp. 700-707
Author(s):  
A V Vodop'yanov ◽  
S A Garakhin ◽  
I G Zabrodin ◽  
S Yu Zuev ◽  
A Ya Lopatin ◽  
...  

Author(s):  
Stuart McKernan ◽  
C. Barry Carter

The determination of the absolute polarity of a polar material is often crucial to the understanding of the defects which occur in such materials. Several methods exist by which this determination may be performed. In bulk, single-domain specimens, macroscopic techniques may be used, such as the different etching behavior, using the appropriate etchant, of surfaces with opposite polarity. X-ray measurements under conditions where Friedel’s law (which means that the intensity of reflections from planes of opposite polarity are indistinguishable) breaks down can also be used to determine the absolute polarity of bulk, single-domain specimens. On the microscopic scale, and particularly where antiphase boundaries (APBs), which separate regions of opposite polarity exist, electron microscopic techniques must be employed. Two techniques are commonly practised; the first [1], involves the dynamical interaction of hoLz lines which interfere constructively or destructively with the zero order reflection, depending on the crystal polarity. The crystal polarity can therefore be directly deduced from the relative intensity of these interactions.


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