Targeted enrichment of 28Si thin films for quantum computing

被引:9
|
作者
Tang, K. [1 ,2 ]
Kim, H. S. [2 ,3 ]
Ramanayaka, A. N. [2 ]
Simons, D. S. [2 ]
Pomeroy, J. M. [2 ]
机构
[1] Univ Maryland, Dept Mat Sci & Engn, College Pk, MD 20740 USA
[2] NIST, Gaithersburg, MD 20899 USA
[3] Univ Maryland, Dept Elect & Comp Engn, College Pk, MD 20740 USA
来源
JOURNAL OF PHYSICS COMMUNICATIONS | 2020年 / 4卷 / 03期
关键词
isotope enrichment; semiconductor materials; quantum information; molecular beam epitaxy; thin films; SILICON; INFORMATION;
D O I
10.1088/2399-6528/ab7b33
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We report on the growth of isotopically enriched Si-28 epitaxial films with precisely controlled enrichment levels, ranging from natural abundance ratio of 92.2% all the way to 99.99987% (0.832 x 10(-6) mol mol(-1 29)Si). Isotopically enriched Si-28 is regarded as an ideal host material for semiconducting quantum computing due to the lack of Si-29 nuclear spins. However, the detailed mechanisms for quantum decoherence and the exact level of enrichment needed for quantum computing remain unknown. Here we use hyperthermal energy ion beam deposition with silane gas to deposit epitaxial Si-28. We switch the mass selective magnetic field periodically to control the Si-29 concentration. We develop a model to predict the residual Si-29 isotope fraction based on deposition parameters and measure the deposited film using secondary ion mass spectrometry (SIMS). The measured Si-29 concentrations show excellent agreement with the prediction, deviating on average by only 10%.
引用
收藏
页数:7
相关论文
共 50 条
  • [31] Toward 28Si through trichlorosilane
    Babichev, AP
    Zhernova, ZY
    Kurochkin, AV
    Mishachev, AA
    Popov, GE
    Rudnev, AI
    Tikhomirov, AV
    INORGANIC MATERIALS, 2002, 38 (05) : 425 - 426
  • [32] PROTON SPIN-FLIP IN REACTION 28SI(P P')28SI] (1.78 AT 40 MEV
    GINAVEN, RO
    GROSS, EE
    MALANIFY, JJ
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1968, 13 (01): : 116 - &
  • [33] Cluster structures and superdeformation in 28Si
    Taniguchi, Yasutaka
    En'yo, Yoshiko Kanada
    Kimura, Masaaki
    PHYSICAL REVIEW C, 2009, 80 (04):
  • [34] A 2D quantum dot array in planar 28Si/SiGe
    Unseld, F. K.
    Meyer, M.
    Madzik, M. T.
    Borsoi, F.
    de Snoo, S. L.
    Amitonov, S. V.
    Sammak, A.
    Scappucci, G.
    Veldhorst, M.
    Vandersypen, L. M. K.
    APPLIED PHYSICS LETTERS, 2023, 123 (08)
  • [35] Crystallization kinetics during layer exchange of 28Si implanted Al films for fabrication of quantum computers: A theoretical model
    Schneider, Ella B.
    England, Jonathan
    JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A, 2024, 42 (04):
  • [36] Optical and Double Folding Model Analysis of 28Si(α,α)28Si Elastic Scattering from 12.7 to 240 MeV
    Yu. E. Ahmed Hammad Amer
    A. Penionzhkevich
    Physics of Particles and Nuclei Letters, 2021, 18 : 640 - 647
  • [37] A STUDY OF NUCLEAR STRUCTURE OF 28SI BY 27AL(3HE,D)28SI REACTION
    BARNARD, RW
    JONES, GD
    NUCLEAR PHYSICS A, 1968, A108 (03) : 641 - &
  • [38] Optical and Double Folding Model Analysis of 28Si(α,α)28Si Elastic Scattering from 12.7 to 240 MeV
    Amer, Ahmed Hammad
    Penionzhkevich, Yu E.
    Amar, A.
    PHYSICS OF PARTICLES AND NUCLEI LETTERS, 2021, 18 (06) : 640 - 647
  • [39] Cross sections for inelastic scattering of neutrons on 28Si and comparison with the 25Mg(α, n)28Si reaction
    Negret, A.
    Borcea, C.
    Bucurescu, D.
    Deleanu, D.
    Dessagne, Ph.
    Filipescu, D.
    Ghita, D.
    Glodariu, T.
    Kerveno, M.
    Marginean, N.
    Marginean, R.
    Mihai, C.
    Pascu, S.
    Plompen, A. J. M.
    Sava, T.
    Stroe, L.
    PHYSICAL REVIEW C, 2013, 88 (03):
  • [40] ELECTRON EXCITATION OF GIANT RESONANCE IN 28SI
    GULKAROV, IS
    AFANASEV, NG
    SAVITSKI.GA
    KHVASTUN.VM
    SHEVCHEN.NG
    IZVESTIYA AKADEMII NAUK SSSR SERIYA FIZICHESKAYA, 1968, 32 (10): : 1763 - &