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Figure/Table detail
Solution of the Dipoles in Noncommutative Space with Minimal Length
*
Meng-Yao Zhang,Zheng-Wen Long,Chao-Yun Long
Communications in Theoretical Physics
, 2019, 71(
6
): 640-646. DOI:
10.1088/0253-6102/71/6/640
Fig.2
The distribution of the energy spectra $\epsilon$ versus $\mu$ $(n=M=\omega =\rho =1)$.
Other figure/table from this article
Fig.1
The distribution of the energy spectra $\epsilon$ versus $\mu$ $(n=M=\omega =\rho =1)$.
Fig.3
The distribution of the energy spectra $\epsilon$ versus $\mu$ $(n=M=\omega =\rho =1)$.
Fig.4
The distribution of the energy spectra $\epsilon$ versus $\mu$ $(n=M=\omega =\rho =1)$.
Fig.5
The distribution of the energy spectra $\epsilon$ versus $\mu$ $(n=M=\omega =\rho =1)$.
Fig.6
The distribution of the energy spectra $\epsilon$ versus $\mu$ $(n=M=\omega =\rho =1)$.
Fig.7
The distribution of the energy spectra $\epsilon$ versus $d$ $({n}'=\tilde{M}=\tilde{\omega }=\rho _{m}=1)$.
Fig.8
The distribution of the energy spectra $\epsilon$ versus $d$ $({n}'=\tilde{M}=\tilde{\omega }=\rho _{m}=1)$.
Fig.9
The distribution of the energy spectra $\epsilon$ versus $d$ $({n}'=\tilde{M}=\tilde{\omega }=\rho _{m}=1)$.
Fig.10
The distribution of the energy spectra $\epsilon$ versus $d$ $({n}'=\tilde{M}=\tilde{\omega }=\rho _{m}=1)$.
Fig.11
The distribution of the energy spectra $\epsilon$ versus $d$ $({n}'=\tilde{M}=\tilde{\omega }=\rho _{m}=1)$.
Fig.12
The distribution of the energy spectra $\epsilon$ versus $d$ $({n}'=\tilde{M}=\tilde{\omega }=\rho _{m}=1)$.