Electric dipole moments and molecular conformations of acetophenone oximes and benzaldoximes

Author(s):  
Saumyendunarayau Basu ◽  
Charles W. N. Cumper
1973 ◽  
Vol 51 (12) ◽  
pp. 1906-1909 ◽  
Author(s):  
Ernst Bock ◽  
Robert Wasylishen ◽  
Bernard E. Gaboury ◽  
Edward Tomchuk

The dipole moments of ortho-, meta-, and para-fluoroacetophenone and of ortho-, meta-, and para-trifluoromethylacetophenone were determined in dilute benzene and carbon tetrachloride solutions at 25 °C. In addition the dipole moments and the total energies of the above molecules and of acetophenone, fluorobenzene, and trifluoromethylbenzene were computed for different molecular conformations by the INDO molecular orbital approximation. In some cases there is quantitative agreement between the experimental dipole moments and the INDO computed dipole moments. The most probable conformation for different fluoroacetophenone and trifluoromethylacetophenone molecules is suggested.


2019 ◽  
Vol 55 (8) ◽  
Author(s):  
A. Gutiérrez-Rodríguez ◽  
M. Köksal ◽  
A. A. Billur ◽  
M. A. Hernández-Ruíz

2021 ◽  
Vol 2021 (7) ◽  
Author(s):  
Joachim Brod ◽  
Emmanuel Stamou

Abstract Electric dipole moments are sensitive probes of new phases in the Higgs Yukawa couplings. We calculate the complete two-loop QCD anomalous dimension matrix for the mixing of CP-odd scalar and tensor operators and apply our results for a phenomenological study of CP violation in the bottom and charm Yukawa couplings. We find large shifts of the induced Wilson coefficients at next-to-leading-logarithmic order. Using the experimental bound on the electric dipole moments of the neutron and mercury, we update the constraints on CP-violating phases in the bottom and charm quark Yukawas.


2021 ◽  
Vol 815 ◽  
pp. 136136
Author(s):  
Michael J. Ramsey-Musolf ◽  
Juan Carlos Vasquez

2013 ◽  
Vol 28 (29) ◽  
pp. 1350147 ◽  
Author(s):  
TAKESHI FUKUYAMA ◽  
ALEXANDER J. SILENKO

General classical equation of spin motion is explicitly derived for a particle with magnetic and electric dipole moments in electromagnetic fields. Equation describing the spin motion relative to the momentum direction in storage rings is also obtained.


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