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The relationship between the spin helicity and the polarity of P in CFAO (x=0.02) presented in Ref. is incorrect, because of the misapplication of the formula of the scattering cross-section in Ref. to the previous experimental setup. The relationship among the direction of pN, the neutron-diffraction intensities and the direction of the poling electric field in the present study is the same as that in the previous study on CFAO (x=0.02) in Ref.. This indicates that the one-to-one correspondence between the spin helicity and the polarity of P shown in Figs. 4 4 in this paper is common to CFAO (x=0.02), CFAO (x=0.015), and CFGO (x=0.035).
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The relationship between the spin helicity and the polarity of P in CFAO (x=0.02) presented in Ref. is incorrect, because of the misapplication of the formula of the scattering cross-section in Ref. to the previous experimental setup. The relationship among the direction of pN, the neutron-diffraction intensities and the direction of the poling electric field in the present study is the same as that in the previous study on CFAO (x=0.02) in Ref.. This indicates that the one-to-one correspondence between the spin helicity and the polarity of P shown in Figs. 4 4 in this paper is common to CFAO (x=0.02), CFAO (x=0.015), and CFGO (x=0.035).
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