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README.md

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### Research pages
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- CCT: [research/quantum-electronics/index.md](research/quantum-electronics/index.md)
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- Electron: [research/eQIP/index.md](research/eQIP/index.md)
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- Lattice: [research/quantum-emulation/index.md](research/quantum-emulation/index.md)
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- Electron: [research/electron-trap/index.md](research/electron-trap/index.md)
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- Lattice: [research/quantum-simulation/index.md](research/quantum-simulation/index.md)
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- Spacetime: [research/ring-trap/index.md](research/ring-trap/index.md)
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- SQIP: [research/quantum-computing/index.md](research/quantum-computing/index.md)
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- SQIP: [research/surface-treatment/index.md](research/surface-treatment/index.md)
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- STAQ: [research/staq/index.md](research/staq/index.md)
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### Details

_includes/menu.html

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<li class="has-sub"><a href="#" onclick="return false;">Research</a>
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<ul>
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<li><a href="/research/ring-trap/">Ring Trap</a></li>
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<li><a href="/research/quantum-computing/">Surface Treatment</a></li>
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<li><a href="/research/quantum-emulation/">Quantum Simulation</a></li>
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<li><a href="/research/surface-treatment/">Surface Treatment</a></li>
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<li><a href="/research/quantum-simulation/">Quantum Simulation</a></li>
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<li><a href="/research/quantum-electronics/">Double Trap</a></li>
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<li><a href="/research/staq/">Scalable Trap</a></li>
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<li><a href="/research/eQIP/">Electron Trap</a></li>
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<li><a href="/research/electron-trap/">Electron Trap</a></li>
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</ul>
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</li>
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<li><a href="/members/">Members</a></li>
File renamed without changes.

research/eQIP/index.md research/electron-trap/index.md

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# {{ page.title }}
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<figure>
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<img src="/research/eQIP/Trap.png" alt="Electron trap" height="350" />
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<img src="/research/electron-trap/Trap.png" alt="Electron trap" height="350" />
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<figcaption>
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Proposed schematic for electron trap.
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</figcaption>

research/quantum-electronics/index.md

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## Electric-field noise vs. ion height
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With the capability of shuttling the ion up and down, we can perform measurements of the
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electric-field noise (see [SQIP](/research/quantum-computing/)).
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electric-field noise (see [SQIP](/research/surface-treatment/)).
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We find the distance dependence of the noise to scale as d<sup>-2.6</sup> in our trap and a frequency dependence
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which is consistent with 1/f noise. With significant evidence that we are not limited by technical
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noise sources, our distance scaling data is consistent with a noise correlation length of about 100

research/quantum-emulation/index.md research/quantum-simulation/index.md

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[Phys. Rev. X 8, 011038 (2018)](https://journals.aps.org/prx/abstract/10.1103/PhysRevX.8.011038)
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<figure>
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<img src="/research/quantum-emulation/VAET_section.jpg" alt="Figures related to vibrationally-assisted energy transfer experiment" />
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<img src="/research/quantum-simulation/VAET_section.jpg" alt="Figures related to vibrationally-assisted energy transfer experiment" />
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<figcaption>
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Schematic illustrations of the VAET process, the ion trap apparatus, the implementation of the experiment,
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and the experimental energy transfer results. Figures from Phys. Rev. X 8, 011038.
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[npj Quantum Inf. 7, 46 (2021)](https://www.nature.com/articles/s41534-021-00380-8)
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<figure>
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<img src="/research/quantum-emulation/verification-protocols.png" alt="Diagrams of verification protocols for analog quantum simulators" width="500" />
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<img src="/research/quantum-simulation/verification-protocols.png" alt="Diagrams of verification protocols for analog quantum simulators" width="500" />
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<figcaption>
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<b>Illustration of verification protocols for analog
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quantum simulators.</b> Various protocols yield information
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[Phys. Rev. Lett. 122, 123605 (2019)](https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.122.123605)
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<figure>
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<img src="/research/quantum-emulation/Lattice_section_web.jpg" alt="Experimental test of local Lorentz invariance" width="650" />
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<img src="/research/quantum-simulation/Lattice_section_web.jpg" alt="Experimental test of local Lorentz invariance" width="650" />
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<figcaption>
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Overview of local Lorentz invariance test and results.
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</figcaption>

research/quantum-computing/index.md research/surface-treatment/index.md

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we combine an ion trap with variable temperature together with surface cleaning and analyzation tools.
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<figure>
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<img src="/research/quantum-computing/argon_cleaning.jpg" alt="Photo of argon cleaning process" height="400" />
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<img src="/research/surface-treatment/argon_cleaning.jpg" alt="Photo of argon cleaning process" height="400" />
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<figcaption>
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Argon cleaning of a planar trap.
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</figcaption>

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