Lee Yeong Kim
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Explore the profile of Lee Yeong Kim including associated specialties, affiliations and a list of published articles.
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Articles
8
Citations
2
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Recent Articles
1.
Kim L, Kang D, Park S, Lim S, Kim J, Schollkopf W, et al.
Faraday Discuss
. 2024 May;
251(0):160-170.
PMID: 38766945
Mirrors for atoms and molecules are essential tools for matter-wave optics with neutral particles. Their realization has required either a clean and atomically smooth crystal surface, sophisticated tailored electromagnetic fields,...
2.
Kim L, Park S, Lee C, Schollkopf W, Zhao B
Phys Chem Chem Phys
. 2022 Aug;
24(36):21593-21600.
PMID: 35971780
We report on a method of enhanced elastic and coherent reflection of He and He from a micro-structured solid surface under grazing incidence conditions. The van der Waals bound ground-state...
3.
Kim L, Lee J, Kim Y, Park S, Lee C, Schollkopf W, et al.
Phys Chem Chem Phys
. 2021 Feb;
23(13):8030-8036.
PMID: 33587734
We report on an experimental test of Babinet's principle in quantum reflection of an atom beam from diffraction gratings. The He beam is reflected and diffracted from a square-wave grating...
4.
Kim L, Jin B, Kim T, Lee J, Zhao B
Sci Adv
. 2020 Apr;
6(14):eaaz0682.
PMID: 32284979
We study the effect of rotational state-dependent alignment in the scattering of molecules by optical fields. CS molecules in their lowest few rotational states are adiabatically aligned and transversely accelerated...
5.
Lee J, Kim L, Kim Y, Lee C, Schollkopf W, Zhao B
Phys Rev Lett
. 2019 Feb;
122(4):040401.
PMID: 30768348
We report on reflection and diffraction of beams of He and D_{2} from square-wave gratings of a 400-μm period and strip widths ranging from 10 to 200 μm at grazing-incidence...
6.
Zhang W, Lee J, Kim H, Jin B, Kim B, Kim L, et al.
Chemphyschem
. 2016 Oct;
17(22):3670-3676.
PMID: 27748011
Molecular beams of He and D are scattered from a ruled diffraction grating in conical-mount geometry under grazing-incidence conditions. Fully resolved diffraction patterns as a function of detection angle are...
7.
Sun X, Jin B, Kim L, Kim B, Zhao B
Chemphyschem
. 2016 Sep;
17(22):3701-3708.
PMID: 27643692
The optical dipole force acting on molecules is enhanced by decreasing the rotational temperature of the molecule and aligning the molecular axis with a linearly polarized nonresonant laser beam. The...
8.
Sun X, Kim L, Zhao B, Chung D
Phys Rev Lett
. 2015 Dec;
115(22):223001.
PMID: 26650301
We report on the rotational-state-dependent, transverse acceleration of CS_{2} molecules affected by pulsed optical standing waves. The steep gradient of the standing wave potential imparts far stronger dipole forces on...