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Hope Lee

Researcher at University of Chicago

Publications -  5
Citations -  106

Hope Lee is an academic researcher from University of Chicago. The author has contributed to research in topics: Coherent diffraction imaging & Diffraction. The author has an hindex of 2, co-authored 4 publications receiving 60 citations.

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Purcell Enhancement of a Single Silicon Carbide Color Center with Coherent Spin Control.

TL;DR: In this paper, the authors presented the Purcell enhancement of a single neutral divacancy coupled to a photonic crystal cavity, which achieved a Purcell factor of ∼50, which manifested as increased photoluminescence into the zero-phonon line.
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General approaches for shear-correcting coordinate transformations in Bragg coherent diffraction imaging: Part 1

TL;DR: In this paper, a generalized description of the scattering geometry of Bragg coherent diffraction imaging (BCDI) experiments, the shear distortion effects inherent to the resulting 3D image from current phase retrieval methods and strategies to mitigate this distortion are presented.
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General approaches for shear-correcting coordinate transformations in Bragg coherent diffraction imaging: Part 1.

TL;DR: The theory of Bragg coherent diffraction is described, from the diffraction in Bragg geometry, to the corrections needed to obtain a properly rendered digital image of the 3D scatterer, and the real-space coordinate transformation to correct this shear.

Microwave Spin Control of a Tin-Vacancy Qubit in Diamond

TL;DR: In this paper , the negatively charged tin-vacancy (SnV-) center in diamond is used to achieve high-fidelity microwave spin control, achieving pi-pulse fidelity of up to 99.51+/0.03%$ and a Hahn-echo coherence time of 170.0+/-2.8 microseconds.