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New approaching in neutron absorption ONThxDUO2 nano structure with quantum dot FOR515 MHz magnetic quadrupole
Oleh:
Hardiyanto, Moh.
Jenis:
Article from Proceeding
Dalam koleksi:
Prosiding Seminar Nasional Teknologi Industri (SNTI) ke-IV: Inovasi Teknologi Ramah Lingkungan untuk Penguatan Daya Saing Industri di Jakarta, 4-5 Juni 2014 - Buku I
,
page 001: 1-10.
Topik:
neutron floating interband
;
ThxDUO2
;
quantum dot
;
magnetic quadrupole
Fulltext:
Moh Hardiyanto - p21.pdf
(334.63KB)
Isi artikel
We present an experimental of nuclear chain investigation of ThxDUO2B^2 nano structure with quantum dot interacting with a strongly localized optical field as encountered in high-resolution near-field optical microscopy. The strong gradients of these localized fields suggest that higher-order multipolar interactions will affect the standard magnetic dipole transition rates and selection rules. For neutron absorption tunneling quantum dot in the strong confinement limit we calculated the interband magnetic quadrupole absorption rate and the associated selection rules. Founded that the magnetic quadrupole absorption rate is comparable with the absorption rate calculated in the magnetic dipole approximation. This implies that near-field optical techniques can extend the range of spectroscopic measurements for 495 MHz at quantum magnetic field until 515 MHz deployment quantum field at B around 445-475 tesla beyond the standard dipole approximation. However, we also show that spatial resolution cannot be improved by the selective excitation of electric quadrupole transitions.
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