Design and Characterization of an Ultra Low Loss, Dispersion-Flattened Slotted Photonic Crystal Fiber for Terahertz Application
Explore this paper's citation graph
- Type
- article
- Published
- 2018-11-24
- Cited by
- 4
- References
- 63
- OpenAlex
- https://openalex.org/W2903370736
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:139787096
Keywords
Photonic-crystal fiber, Terahertz radiation, Materials science, Birefringence, Optics
References
- Effects of THz Exposure on Human Primary Keratinocyte Differentiation and Viability
- Extremely High-Birefringent Asymmetric Slotted-Core Photonic Crystal Fiber in THz Regime
- Bendable, low-loss Topas fibers for the terahertz frequency range.
- Ultra-Low Material Loss and Dispersion Flattened Fiber for THz Transmission
- Real-time terahertz imaging for art conservation science
- Using unusable frequencies [solid-state terahertz laser]
- Localized biosensing with Topas microstructured polymer optical fiber.
- Terahertz pulsed imaging of freshly excised human colonic tissues
- Integrated THz technology for label-free genetic diagnostics
- Transmission of terahertz radiation using a microstructured polymer optical fiber.
- Fabrication and characterization of porous-core honeycomb bandgap THz fibers.
- In vivo terahertz spectroscopy of pigmentary skin nevi: Pilot study of non-invasive early diagnosis of dysplasia
- Terahertz pulsed spectroscopy of freshly excised human breast cancer.
- Porous-Core Photonic Crystal Fiber for Low Loss Terahertz Wave Guiding
- Silver/polystyrene-coated hollow glass waveguides for the transmission of terahertz radiation.
- THz porous fibers: design, fabrication and experimental characterization.
- Harmless screening of humans for the detection of concealed objects
- Accuracy and resolution of THz reflection spectroscopy for medical imaging
- High-birefringence, low-loss porous fiber for single-mode terahertz-wave guidance.
- Broadband, low-loss, dispersion flattened porous-core photonic bandgap fiber for terahertz (THz)-wave propagation
Cited by
- Extremely Low Effective Material Loss of Air Core Photonic Crystal Fiber for THz Guidance
- Design and characterization of a circular sectored core cladding structured photonic crystal fiber with ultra-low EML and flattened dispersion in the THz regime
- Performance analysis of slotted rectangular photonic crystal fiber structures in terahertz waveguidance
- A Novel Approach for Identification of Cancer Cells Using a Photonic Crystal Fiber-Based Sensor in the Terahertz Regime
- Design of a Surface Plasmon Resonance Based Chemical and Bio Molecular Sensor
Related papers
- Measure of twist-induced circular birefringence in long single-mode fibers: theory and experiments
- Development of a test setup for precise measurement of polarization mode dispersion in single-mode and polarization-maintaining fibers and for characterization of optical devices
- Measurements and simulation of dispersion-limited transmission length in single-mode fibers
- Design of single-polarization single-mode photonic crystal fiber at 1.30 and 1.55 /spl mu/m
- Polarization mode dispersion characterization of single-mode optical fiber using backscattering technique
- A novel single-polarization single-mode photonic crystal fiber with circular and elliptical air-holes arrays
- Design of single-polarization single-mode fibers with zero dispersion at 1.3 /spl mu/m or 1.55 /spl mu/m wavelength
- Polarization properties of single-mode fiber: intrinsic limits and uses
- Modes of an endlessly single-mode photonic crystal fiber: a finite element investigation
- Loss analysis of single‐mode fiber/photonic‐crystal fiber splice