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量子计算

量子计算

Quantum Computing

利用好的滤光片释放量子计算的潜力

欢迎来到艺达思健康与科学 | Semrock:您的量子计算滤光片合作伙伴

基于电离原子量子位的量子计算依赖于激光技术来产生、冷却、定位和量子位状态读出。

在艺达思健康与科学 | Semrock,我们的滤光片应用在这些使用精密激光器的系统中,在量子计算领域发挥着关键作用。由于激光束的数量可能非常大,波长和规格因原子激发态光谱而不同,因此,定制滤光片可以在这些系统中发挥关键作用。

量子计算用的Semrock滤光片

用于量子硬件的 Semrock 滤光片

自 2000 年以来,我们一直处于滤光片 定制优化 的前沿,开拓新的技术来满足先进应用的需求。我们的目录和定制滤光片涵盖了紫外、可见光和红外波段中的大部分波长,包括用于原子冷却和离子捕获应用的波长。

我们的改革解决了对量子计算系统至关重要的几个方面,包括:

  • 波长精度: 我们先进的薄膜镀膜工艺控制可确保精确的边缘放置,和生产镀膜批次内和批次间的光谱边缘位置可重复性。
  • 窄带宽和高边缘陡度(窄过渡): 窄带滤光片上高透射率和深度阻挡之间的光谱距离短。
  • 耐用性和牢靠性: 所有滤光片都能承受极端的温度和湿度,并提供十年的质保期。
  • 出色的滤光片性能需要出色的光学计量技术。我们通过 KolaDeepTM 光谱测量系统, 确保我们的标准,其功能包括:
    • 深度阻挡测量: 在紫外、可见光和近红外波段范围内达 OD 8-9,光谱特征达 OD 11。
    • 边缘分辨率: 从 90% 透射率到 OD > 7,相对于边缘波长,精度可达 0.2%。

    下左图显示六陷波滤光片的设计与 KolaDeep 测量结果一致,低至 OD 6-7 ;右图显示了经 KolaDeep 确认的单激光线设计,其 OD 可达 7-8。

    six-notch filter agrees with KolaDeep measurements down to OD6-7

    single laser line design confirmed by KolaDeep down to OD 7-8

  • 具有大入射角度的角度调谐: 角度可调滤光片,用于可预测地移动可变或非标准激光线的滤光片光谱轮廓。
  • 具有高激光损伤阈值(LDT) 等级的硬镀膜薄膜滤光片

联系我们

准备好使用我们的优质滤光片来优化您的量子计算体验了吗?请填写本页右侧的联系表,立即联系我们的工程师,踏上为量子计算性能提供无与伦比的支持的旅程。

与美国艺达思健康与科学有限公司合作,定制 Semrock 滤光片。

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  • Center Wavelength 1
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  • Clear Aperture
  • Common Fluorophore Pair to Split
  • Cutoff Transition Width
  • Cuton Transition Width
  • Dichroic Beamsplitters
  • Dichroic Flatness
  • Dichroic Orientation
  • Edge
  • Edge Steepness
  • Edge Wavelength 1
  • Edge Wavelength 2
  • Edge Wavelength 3
  • Edge Wavelength 4
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  • Exciter Emitter Orientation
  • F1' Error
  • Flatness
  • GMBW 1
  • General Filter Specifications
  • Group Delay Dispersion
  • Group Delay Dispersion 1
  • Group Delay Dispersion 2
  • Guaranteed Minimum Bandwidth 1
  • Guaranteed Minimum Bandwidth 2
  • Guaranteed Minimum Bandwidth 3
  • Guaranteed Minimum Bandwidth 4
  • Guaranteed Minimum Bandwidth 5
  • Guaranteed Minimum Bandwidth 9
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  • Laser Wavelengths 1
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  • Maximum Reflected Laser Beam Diameter
  • MercuryLine
  • Microscope Compatibility
  • Nominal Flatness
  • Notch Bandwidth 1
  • Optical Damage Rating
  • Optical Specifications
  • Orientation
  • Physical Filter Specifications
  • Pulse Dispersion
  • Reflected Laser Wavelengths
  • Reflected Wavefront Error
  • Reflection Band 1
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  • Reflection Band 3
  • Reflection Band 4
  • Reflection Band 5
  • Special use
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  • Transmission Ripple
  • Transmission Value 1
  • Transmitted Laser Wavelengths
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  • Transverse Tolerance
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