Many P-wave mixing heavy-light 1^+ states have not yet been discovered by experiment, while others have been discovered but without width information, or with large uncertainties on the widths. In this paper, the str...Many P-wave mixing heavy-light 1^+ states have not yet been discovered by experiment, while others have been discovered but without width information, or with large uncertainties on the widths. In this paper, the strong decays of the P-wave mixing heavy-light 1^+ states D^0, D^±, D^±, B^0, B^±: and Bs are studied by the improved Bethe SMpeter (B-S) method with two conditions of mixing angle 0: one is 0 = 35.3°; the other is considering a correction to the mixing angle 0=35.3°+θ1. Valuable predictions for the strong decay widths are obtained: F(D1^0)=232 MeV, r(D1^0)=21.5 MeV, F(D1^±)=232 MeV, F(D1^±)=21.5 MeV, F(Ds1^±)=0.0101 MeV,Г(Ds1^±l)=0.950 MeV, F(BГ^±+)=263 MeV, F(B1^±=16.8 MeV, F(B′s1)=0.01987 MeV and F(B,1)=0.412 MeV. It is found that the decay widths of D~ and Bsl are very sensitive to the mixing angle. The results will provide theoretical assistance to future experiments.展开更多
Both impurity- and magnetic-field-induced quasiparticle states in chiral p-wave superconductors are investigated theoretically by solving the Bogoliubov-de Gennes equations self-consistently. At the strong scattering ...Both impurity- and magnetic-field-induced quasiparticle states in chiral p-wave superconductors are investigated theoretically by solving the Bogoliubov-de Gennes equations self-consistently. At the strong scattering limit, we find that a universal state bound to the impurity can be induced for both a single nonmagnetic impurity and a single magnetic impurity. Furthermore, we find that different chiral order parameters and the corresponding supercurrents have uniform distributions around linear impurities. Calculations of the local density of states in the presence of an external magnetic field show that the intensity peak of the zero-energy Majorana mode in the vortex core can be enhanced dramatically by tuning the strength of the external magnetic field or pairing interaction.展开更多
The P-wave charm-strange mesons Ds0(2317) and Ds1(2460) lie below the DK and D*K threshold respectively. They are extremely narrow because their strong decays violate the isospin symmetry. We study the possible h...The P-wave charm-strange mesons Ds0(2317) and Ds1(2460) lie below the DK and D*K threshold respectively. They are extremely narrow because their strong decays violate the isospin symmetry. We study the possible heavy molecular states composed of a pair of excited charm strange mesons. As a byproduct, we also present the numerical results for the bottonium-like analogue.展开更多
基金Supported by the National Natural Science Foundation of China(NSFC)(11405004,11405037,11505039,11575048)the Key Scientific Research Projects in 2017 at North Minzu University(2017KJ11)+1 种基金Ningxia First-Class Discipline and Scientific Research Projects(Electronic Science and Technology)(NXYLXK2017A07)the Fundamental Research Funds for the Central Universities,North Minzu University(2018XYZDX08)
文摘Many P-wave mixing heavy-light 1^+ states have not yet been discovered by experiment, while others have been discovered but without width information, or with large uncertainties on the widths. In this paper, the strong decays of the P-wave mixing heavy-light 1^+ states D^0, D^±, D^±, B^0, B^±: and Bs are studied by the improved Bethe SMpeter (B-S) method with two conditions of mixing angle 0: one is 0 = 35.3°; the other is considering a correction to the mixing angle 0=35.3°+θ1. Valuable predictions for the strong decay widths are obtained: F(D1^0)=232 MeV, r(D1^0)=21.5 MeV, F(D1^±)=232 MeV, F(D1^±)=21.5 MeV, F(Ds1^±)=0.0101 MeV,Г(Ds1^±l)=0.950 MeV, F(BГ^±+)=263 MeV, F(B1^±=16.8 MeV, F(B′s1)=0.01987 MeV and F(B,1)=0.412 MeV. It is found that the decay widths of D~ and Bsl are very sensitive to the mixing angle. The results will provide theoretical assistance to future experiments.
基金Acknowledgements This work was supported by the National Natural Science Foundation of China (Grant Nos. 11625416 and 11474064), the State Key Programs of China (Grant No. 2016YFA0300504), the Strategic Priority Research Program (B) of the Chinese Academy of Sciences (Grant No. XDB04040300), and the Youth Innovation Promotion Association of the Chinese Academy of Sciences (Grant No. 2016215).
文摘Both impurity- and magnetic-field-induced quasiparticle states in chiral p-wave superconductors are investigated theoretically by solving the Bogoliubov-de Gennes equations self-consistently. At the strong scattering limit, we find that a universal state bound to the impurity can be induced for both a single nonmagnetic impurity and a single magnetic impurity. Furthermore, we find that different chiral order parameters and the corresponding supercurrents have uniform distributions around linear impurities. Calculations of the local density of states in the presence of an external magnetic field show that the intensity peak of the zero-energy Majorana mode in the vortex core can be enhanced dramatically by tuning the strength of the external magnetic field or pairing interaction.
基金Supported by National Natural Science Foundation of China (10625521, 10721063, 10705001)Ministry of Science and Technology of China (2009CB825200)Ministry of Education of China (FANEDD 200924, DPFIHE 20090211120029, NCET-100442)
文摘The P-wave charm-strange mesons Ds0(2317) and Ds1(2460) lie below the DK and D*K threshold respectively. They are extremely narrow because their strong decays violate the isospin symmetry. We study the possible heavy molecular states composed of a pair of excited charm strange mesons. As a byproduct, we also present the numerical results for the bottonium-like analogue.