the National Natural Science Foundation of China(Grant Nos.12164032,11964026,and 12364010);the Natural Science Foundation of Inner Mongolia Autonomous Region,China(Grant Nos.2019MS01010,2022MS01014,and 2020BS01009);the Doctor Research Start-up Fund of Inner Mongolia Minzu University(Grant Nos.BS625 and BS439);the Basic Research Funds for Universities Directly under the Inner Mongolia Autonomous Region,China(Grant No.GXKY23Z029).
We have applied strong coupling unitary transformation method combined with Bose–Einstein statistical law to investigate magnetopolaron energy level temperature effects in halogen ion crystal quantum wells.The obtain...
supported by the National Natural Science Foundation of China(12164032 and 11964026);the Natural Science Foundation of Inner Mongolia(No.2019MS01010,2022MS01014);Doctor Research Start-up Fund of Inner Mongolia Minzu University(BS625);Scientific Research Projects in Colleges and Universities in Inner Mongolia(No.NJZZ19145)
The polaron phenomenon is commonly observed in low-dimensional semiconductor materials and is known to have unique effects on conductive material properties.Furthermore,the phonon dragging effect,which leads to the po...
Project supported by the National Natural Science Foundation of China(Grant No.11975011).
We study the property of magnetopolaron in a parabolic quantum dot under the Rashba spin–orbit interaction(RSOI)by adopting an unitary transformation of Lee–Low–Pines type and the variational method of Pekar type w...
We investigate the influence of magnetic field on the linear and nonlinear optical absorptions in a parabolic quantum dot(QD) through electron-LO-phonon interaction by using the Lee-Low-Pines-Huybrecht variational c...
We study the properties of the magnetopolaron in a triangular quantum well within LLP variational method. At different electron-phonon coupling strength, we derive the relations between the ground state energy, the gr...
supported by the Natural Science Foundation of Hebei Province(No.A2008000463);the Science and Technology Research and Development Plan of Qinhuangdao(No.201101A027)
Magnetic field and temperature dependence of the properties of the ground state of the strong-coupling bound magnetopolaron in quantum rods (QRs) with hydrogenic impurity is studied by means of the Huybrechts- Lee-L...
Project supported by the National Natural Science Foundation of China (Grant No. 10964007);the Natural Science Foundation of Inner Mongolia,China (Grant No. 2009MS0110)
The cyclotron mass of magnetopolarons in wurtzite InxGa1-xN/GaN quantum well is studied in the presence of an external magnetic field by using the Larsen perturbation method. The effects of the built-in electric field...
supported by the Items of Institution of Higher Education Scientific Research of Inner Mongolia of China (No.NJ101116)
The dependence of the ground-state properties of weak-coupling bound magnetopolarons in quantum rods (QRs) with hydrogenic impurity on magnetic field and temperature is studied by means of the Lee-Low-Pines (LLP) tran...
the National Natural Science Foundation of China (No. 10347004)
Considering the influences of the spin on the ground state energy,the properties of a weak-coupled magnetopolaron in quantum dots are studied by using a linear combination operator and unitary transformation method.Th...
Science Foundation of Shanghai MunicipalCommission of Education(99QF5 5 ) ;Oneof us(S.Gu) also acknowledged the fi-nancial support of National Natural Sci-ence Foundation of China(No.197740 40 )
With the use of variational method of Pekar type, this paper studied the energy levels of magnetopolaron in quantum wire with strong electron phonon interaction. The magnetopolaron binding energy in the ground state a...