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    • 7. 发明授权
    • Diamond sensors, detectors, and quantum devices
    • 钻石传感器,探测器和量子设备
    • US09249526B2
    • 2016-02-02
    • US14111550
    • 2012-05-01
    • Daniel James TwitchenMatthew Lee MarkhamGeoffrey Alan Scarsbrook
    • Daniel James TwitchenMatthew Lee MarkhamGeoffrey Alan Scarsbrook
    • C30B29/04C30B25/02C30B31/22C30B33/00G06N99/00
    • C30B29/04C30B25/02C30B31/22C30B33/00G06N99/002
    • A synthetic single crystal diamond material comprising: a first region comprising electron donor defects; a second region comprising quantum spin defects; and a third region between the first and second regions. The second and third regions have a lower concentration of electron donor defects than the first region. The first and second regions are sufficiently close to allow electrons to be donated from the first region to the second region, thus forming negatively charged quantum spin defects in the second and positively charged defects in the first region, and sufficiently far apart to reduce other coupling interactions between the first and second regions which would otherwise unduly reduce the decoherence time of the plurality of quantum spin defects and/or produce strain broaden of a spectral line width of the plurality of quantum spin defects in the second region.
    • 一种合成单晶金刚石材料,包括:包含电子供体缺陷的第一区域; 包括量子自旋缺陷的第二区域; 以及第一和第二区域之间的第三区域。 第二和第三区域的电子供体缺陷浓度比第一区域低。 第一和第二区域足够接近以允许电子从第一区域捐赠到第二区域,从而在第一区域中的第二和带正电的缺陷中形成带负电的量子自旋缺陷,并且足够远的距离以减少其它耦合 第一和第二区域之间的相互作用,否则将过度地减少多个量子自旋缺陷的去相干时间和/或产生第二区域中的多个量子自旋缺陷的谱线宽度的应变扩大。