Higher-order defect mode laser in an optically thick photonic crystal slab

Kavli Affiliate: Axel Scherer | Summary:The use of an optically thick slab may provide versatile solutions for the realization of a current injection type laser using photonic crystals. Here, we show that a transversely higher-order defect mode can be designed to be confined by a photonic band gap in such a thick slab. Using simulations, […]


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Large-field-of-view Chip-scale Talbot-grid-based Fluorescence Microscopy

Kavli Affiliate: Paul W. Sternberg | Summary:The fluorescence microscope is one of the most important tools in modern clinical diagnosis and biological science. However, its expense, size and limited field-of-view (FOV) are becoming bottlenecks in key applications such as large-scale phenotyping and low-resource-setting diagnostics. Here we report a low-cost, compact chip-scale fluorescence-imaging platform, termed the […]


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High-Q impurity photon states bounded by a photonic-band-pseudogap in an optically-thick photonic-crystal slab

Kavli Affiliate: Axel Scherer | Summary:We show that, taking a two-dimensional photonic-crystal slab system as an example, surprisingly high quality factors (Q) over 10^5 are achievable, even in the absence of a rigorous photonic-band-gap. We find that the density of in-plane Bloch modes can be controlled by creating additional photon feedback from a finite-size photonic-crystal […]


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High Performance Single Layered WSe2 p-FETs with Chemically Doped Contacts

Kavli Affiliate: Ali Javey | Summary:We report high performance p-type field-effect transistors based on single layered (thickness, ~0.7 nm) WSe2 as the active channel with chemically doped source/drain contacts and high-κ gate dielectrics. The top-gated monolayer transistors exhibit a high effective hole mobility of ~250 cm2/Vs, perfect subthreshold swing of ~60 mV/dec, and ION/IOFF of […]


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Quantum Size Effects on the Chemical Sensing Performance of Two-Dimensional Semiconductors

Kavli Affiliate: Ali Javey | Summary:We investigate the role of quantum confinement on the performance of gas sensors based on two-dimensional InAs membranes. Pd-decorated InAs membranes configured as H2 sensors are shown to exhibit strong thickness dependence, with ~100x enhancement in the sensor response as the thickness is reduced from 48 to 8 nm. Through […]


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Irregular transcription dynamics for rapid production of high-fidelity transcripts

Kavli Affiliate: Martin Depken | Summary:Both genomic stability and sustenance of day-to-day life rely on efficient and accurate readout of the genetic code. Single-molecule experiments show that transcription and replication are highly stochastic and irregular processes, with the polymerases frequently pausing and even reversing direction. While such behavior is recognized as stemming from a sophisticated […]


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A photonic crystal nanocavity laser in an optically very thick slab

Kavli Affiliate: Axel Scherer | Summary:A photonic crystal (PhC) nanocavity formed in an optically very thick slab can support reasonably high-Q modes for lasing. Experimentally, we demonstrate room-temperature pulsed lasing operation from the PhC dipole mode emitting at 1324 nm, which is fabricated in an InGaAsP slab with thickness (T) of 606 nm. Numerical simulation […]


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Spatially resolved electronic inhomogeneities of graphene due to subsurface charges

Kavli Affiliate: Roel H. M. Smit | Summary:We probe the local inhomogeneities in the electronic properties of exfoliated graphene due to the presence of charged impurities in the SiO2 substrate using a combined scanning tunneling and electrostatic force microscope. Contact potential difference measurements using electrostatic force microscopy permit us to obtain the average charge density […]


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Ion association in low-polarity solvents: comparisons between theory, simulation, and experiment

Kavli Affiliate: Jos Zwanikken | Summary:The association of ions in electrolyte solutions at very low concentration and low temperature is studied using computer simulations and quasi-chemical ion-pairing theory. The specific case of the restricted primitive model (charged hard spheres) is considered. Specialised simulation techniques are employed that lead to efficient sampling of the arrangements and […]


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From vertical-cavities to hybrid metal/photonic-crystal nanocavities: Towards high-efficiency nanolasers

Kavli Affiliate: Axel Scherer | Summary:We provide a numerical study showing that a bottom reflector is indispensable to achieve unidirectional emission from a photonic-crystal (PhC) nanolaser. First, we study a PhC slab nanocavity suspended over a flat mirror formed by a dielectric or metal substrate. We find that the laser’s vertical emission can be enhanced […]


Continue.. From vertical-cavities to hybrid metal/photonic-crystal nanocavities: Towards high-efficiency nanolasers