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7篇 您的检索式:作者名="BERNHARD LENDL"
    题名 作者 年代 出处 被引量
1Determination of pesticides by capillary chromatography and SERS detection using a novel Silver-Quantum dots “sponge” nanocomposite显示文摘Carolina Carrillo-Carrión Bartolomé M. Simonet Miguel Valcárcel Bernhard Lendl 2012Journal of Chromatography A2012,,:2
2Determination of oil and water content in olive pomaee us- ing near infrared and raman spectrometry显示文摘Barbara Muik Bernhard Lendl Antonil Molina-Diaz Luis Perez-Vil- larejo 2004Anal Bioanal Chem2004,,379:1
3Direet monitoring of lipid oxidation in edible oils by flourier transform raman spectroscopy 显示文摘Barbara Muik Bernhard Lendl Antonil Molina-Molina-Diaz 2005Chemistry and Physics of Lipids2005,,134:1
4Hyphenation of Ion exchange high-performance liquid chromatogra-phy with fourier transform infrared detection for the determination of sugars in nonalcoholic beverages显示文摘RICHARD VONACH BERNHARD LENDL ROBERT KELLNER 1997Analytical Chemistry1997,69,20:1
5Study of acid-base titration of succinic and malic acid in aqueous solution by two-dimensional FTIR correlation spectroscopy显示文摘María José Ayora-Caňada Bernhard Lendl 2000Vibrational Spectroscopy2000,,24:1
6Developing automated analytical methods for scientific environments using LAB- VIEW 显示文摘Christoph wagner Sergio Armenta Bernhard Lendl 2010Talanta2010,80,:1
7Advanced mid-infrared plasmonic waveguides for on-chip integrated photonics显示文摘Long-wave infrared(LWIR, 8–14 μm) photonics is a rapidly growing research field within the mid-IR with applications in molecular spectroscopy and optical free-space communication. LWIR applications are often addressed using rather bulky tabletop-sized free-space optical systems, preventing advanced photonic applications,such as rapid-time-scale experiments. Here, device miniaturization into photonic integrated circuits(PICs) with maintained optical capabilities is key to revolutionize mid-IR photonics. Subwavelength mode confinement in plasmonic structures enabled such miniaturization approaches in the visible-to-near-IR spectral range. However,adopting plasmonics for the LWIR needs suitable low-loss and-dispersion materials with compatible integration strategies to existing mid-IR technology. In this paper, we further unlock the field of LWIR/mid-IR PICs by combining photolithographic patterning of organic polymers with dielectric-loaded surface plasmon polariton(DLSPP) waveguides. In particular, polyethylene shows favorable optical properties, including low refractive index and broad transparency between ~2 μm and 200 μm. We investigate the whole value chain, including design, fabrication, and characterization of polyethylene-based DLSPP waveguides and demonstrate their first-time plasmonic operation and mode guiding capabilities along S-bend structures. Low bending losses of ~1.3 d B and straight-section propagation lengths of ~1 mm, pave the way for unprecedented complex on-chip mid-IR photonic devices. Moreover, DLSPPs allow full control of the mode parameters(propagation length and guiding capabilities) for precisely addressing advanced sensing and telecommunication applications with chip-scale devices.MAURO DAVID DAVIDE DISNAN ELENA ARIGLIANI ANNA LARDSCHNEIDER GEORG MARSCHICK HANH T.HOANG HERMANN DETZ BERNHARD LENDL ULRICH SCHMID GOTTFRIED STRASSER BORISLAV HINKOV 2023Photonics Research2023,11,10:0
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