Atomic and electronic structures of p-type dopants in 4H-SiC

来源 :中国物理B(英文版) | 被引量 : 0次 | 上传用户:William_hui
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Using hybrid density functional calculation,we study the atomic and electronic structures of p-type dopants,B,A1 and Ga,in 4H-SiC.For B,depending on the growth condition,it can occupy both Si and C sites.In contrast,A1 and Ga on the C sites exhibit too high formation energy to exist in a significant amount.In 4H-SiC,there exist two types of Si sites in wurtzite-like and zincblende-like local coordination,respectively.Our calculations suggest that the dopant atoms have negligible preference occupying the two sites.In neutral charge state,all the dopants exhibit significant distortions from the structure in the negatively charged state.For most cases,our calculations yield three distorted structures,in which the most stable one has the dopant atom displaced along its bond with one of the surrounding equatorial Si or C atoms,lowering the C3v symmetry to Cs symmetry (i.e.,a mirror symmetry only).Among the three dopant elements,A1 on Si sites exhibits overall the lowest formation energy and the shallowest acceptor level.Nevertheless,it is not a hydrogenic dopant with the acceptor level 0.12 eV above the valence band maximum based on calculation using a 400-atom supercell.Its corresponding defect state exhibits apparent localization along the[0001]direction,but it is relatively delocalized in the(0001) plane.
其他文献
The discharge characteristics of capacitively coupled argon plasmas driven by very high frequency discharge are studied.The mean electron temperature and electron density are calculated by using the Ar spectral lines at different values of power (20 W-70
The orientation switching of a single azobenzene molecule on Au(111) surface excited by tunneling electrons and/or photons has been demonstrated in recent experiments.Here we investigate the rotation behavior of this molecular rotor by first-principles de
Hill-like polycrystalline diamond grains (HPDGs) randomly emerged on a heavy boron-doped p+ single-crystal dia-mond (SCD) film by prolonging the growth duration of the chemical vapor deposition process.The Raman spectral results confirm that a relatively
Abnormal hematocrit (Hct) is associated with an increased risk of pre-hypertension and all-cause death in general pop-ulation,and people with a high Hct value are susceptible to arterial cardiovascular disease and venous thromboembolism.In this study,we r
Extremely large magnetoresistance (XMR) has been explored in many nonmagnetic topologically nontrivial/trivial semimetals,while it is experimentally ambiguous which mechanism should be responsible in a specific material due to the complex electronic struc
We perform first principles calculations to investigate the catalytic behavior of C9N4 nanosheet for water splitting.For the pristine C9N4,we find that,at different hydrogen coverages,two H atoms adsorbed on the 12-membered ring and one H atom adsorbed on
Based on Dirac semimetal metamaterials,the tunable plasmon induced transparency (PIT) is investigated elaborately in this work.The designed unit cell consists of a strip and a square bracket,which is periodically aligned on the dielectric substrate.Our nu
A detailed understanding of anode heat transfer is important for the optimization of arc processing technology.In this paper,a two-temperature chemical non-equilibrium model considering the collisionless space charge sheath is developed to investigate the
Bone fatigue accumulation is a factor leading to bone fracture,which is a progressive process of microdamage deteri-orating under long-term and repeated stress.Since the microdamage of the early stage in bone is difficult to be investigated by linear ultr
Optical superconducting transition-edge sensor (TES) has been widely used in quantum information,biological imag-ing,and fluorescence microscopy owing to its high quantum efficiency,low dark count,and photon number resolving capability.The temperature sen