Lukas M Eng
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Explore the profile of Lukas M Eng including associated specialties, affiliations and a list of published articles.
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58
Citations
288
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Recent Articles
11.
Barnett J, Wehmeier L, Hessler A, Lewin M, Pries J, Wuttig M, et al.
Nano Lett
. 2021 Oct;
21(21):9012-9020.
PMID: 34665620
Chalcogenide phase change materials reversibly switch between non-volatile states with vastly different optical properties, enabling novel active nanophotonic devices. However, a fundamental understanding of their laser-switching behavior is lacking and...
12.
Ali T, Mertens K, Kuhnel K, Rudolph M, Oehler S, Lehninger D, et al.
Nanotechnology
. 2021 Jul;
32(42).
PMID: 34261048
The discovery of ferroelectricity in the fluorite structure based hafnium oxide (HfO) material sparked major efforts for reviving the ferroelectric field effect transistor (FeFET) memory concept. A Novel metal-ferroelectric-metal-ferroelectric-insulator-semiconductor (MFMFIS)...
13.
Yao Z, Chen X, Wehmeier L, Xu S, Shao Y, Zeng Z, et al.
Nat Commun
. 2021 May;
12(1):2649.
PMID: 33976184
Infrared nano-spectroscopy based on scattering-type scanning near-field optical microscopy (s-SNOM) is commonly employed to probe the vibrational fingerprints of materials at the nanometer length scale. However, due to the elongated...
14.
Jach F, Wagner F, Amber Z, Rusing M, Hunger J, Prots Y, et al.
Angew Chem Int Ed Engl
. 2021 May;
60(29):15879-15885.
PMID: 33938602
Exceptionally electron-rich, nearly trigonal-planar tricyanidometalate anions [Fe(CN) ] and [Ru(CN) ] were stabilized in LiSr [Fe(CN) ] and AE [M(CN) ] (AE=Sr, Ba; M=Fe, Ru). They are the first examples...
15.
Feres F, Mayer R, Wehmeier L, Maia F, Viana E, Malachias A, et al.
Nat Commun
. 2021 Apr;
12(1):1995.
PMID: 33790286
Hyperbolic phonon polaritons have recently attracted considerable attention in nanophotonics mostly due to their intrinsic strong electromagnetic field confinement, ultraslow polariton group velocities, and long lifetimes. Here we introduce tin...
16.
Eckert J, van Loon J, Eng L, Schmidt T
Biophys J
. 2021 Mar;
120(5):773-780.
PMID: 33657362
Cells sense and react on changes of the mechanical properties of their environment and, likewise, respond to external mechanical stress applied to them. However, whether the gravitational field as overall...
17.
Oliveira T, Norenberg T, Alvarez-Perez G, Wehmeier L, Taboada-Gutierrez J, Obst M, et al.
Adv Mater
. 2020 Dec;
33(2):e2005777.
PMID: 33270287
Electromagnetic field confinement is crucial for nanophotonic technologies, since it allows for enhancing light-matter interactions, thus enabling light manipulation in deep sub-wavelength scales. In the terahertz (THz) spectral range, radiation...
18.
Lee K, Beyreuther E, Jalil S, Kim S, Eng L, Guo C, et al.
Nat Commun
. 2020 Dec;
11(1):6150.
PMID: 33262344
Optical activation of material properties illustrates the potentials held by tuning light-matter interactions with impacts ranging from basic science to technological applications. Here, we demonstrate for the first time that...
19.
Aminpour H, Eng L, Kehr S
Opt Express
. 2020 Oct;
28(22):32316-32330.
PMID: 33114920
Local electric fields play the key role in near-field optical examinations and are especially appealing when exploring heterogeneous or even anisotropic nano-systems. Scattering-type near-field optical microscopy (s-SNOM) is the most...
20.
Soltani A, Kuschewski F, Bonmann M, Generalov A, Vorobiev A, Ludwig F, et al.
Light Sci Appl
. 2020 Jun;
9:97.
PMID: 32549977
Plasma waves play an important role in many solid-state phenomena and devices. They also become significant in electronic device structures as the operation frequencies of these devices increase. A prominent...