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TECHNICAL GUIDE
TECHNICAL GUIDE

Plasmonics: Fundamentals and Applications
Plasmonics: Fundamentals and Applications

Development of a Tm3+-doped Fluoride Glass - DORAS
Development of a Tm3+-doped Fluoride Glass - DORAS

... ^m), (iv) scintillator dyes (X < 0.4 nm). Dye lasers are generally pumped optically by another laser operating at a shorter wavelength and they are useful for providing a wide range of output wavelengths which may not easily be produced by other laser sources. ...
Thursday, May 10, 2007
Thursday, May 10, 2007

plasmonics: fundamentals and applications
plasmonics: fundamentals and applications

PLASMONICS: FUNDAMENTALS AND APPLICATIONS
PLASMONICS: FUNDAMENTALS AND APPLICATIONS

Numerical techniques for Fresnel diffraction in computational
Numerical techniques for Fresnel diffraction in computational

Role of wavefront aberrations of amplified femtosecond pulses in
Role of wavefront aberrations of amplified femtosecond pulses in

Construction and operation - the UQ Bose
Construction and operation - the UQ Bose

... trapping and evaporation in optical dipole traps and the experimental realisation. In the future this experiment will be extended by a fast scanning dipole trap to apply arbitrary time averaged potentials of more complex geometries, such as toroidal traps to study the effects of superfluidity in a pe ...
Multiterawatt few-cycle pulse OPCPA
Multiterawatt few-cycle pulse OPCPA

... pulses were generated in 1996 at Lawrence Livermoore National Labs (LLNL, Nova 1.25PW, 0.5-ps) [16, 39]. This Petawatt amplifier was dismantled later to make way for the OMEGA-laser. Laser research facilities currently equipped with ”Petawatt-light” are the Rutherford Appleton Labs (RAL, Vulcan 1-PW, ...
Fabrication of Diffractive Lenses Soft X-ray with Resolution
Fabrication of Diffractive Lenses Soft X-ray with Resolution

NGAO NGS WFS design review - Caltech Optical Observatories
NGAO NGS WFS design review - Caltech Optical Observatories

... • 5x5 mode of operation – to simply the size of moving parts while facilitating the two pupil sampling modes, we use the same collimator and post-lenslet relay for both the 63 and 5 sub-ap mode of operation. – We choose 48 pixels/sub-aperture (instead of 50 pixels/sub-ap) to enable 4x4 binned pixel/ ...
Optical Fibers and Fiber-Optic Communications
Optical Fibers and Fiber-Optic Communications

Single-Atom Resolved Imaging and Manipulation in an Atomic Mott
Single-Atom Resolved Imaging and Manipulation in an Atomic Mott

Coatings  - CVI Laser Optics
Coatings - CVI Laser Optics

... in image contrast and lens resolution caused by reflected ghost images (usually defocused) superimposed on the desired image. Applications generally require that the reflected portion of incident light approach zero for transmitting optics (lenses), 100% for reflective optics (mirrors), or some fixe ...
Optical Nonlinearities in the Transparency Region of Bulk Semiconductors . W
Optical Nonlinearities in the Transparency Region of Bulk Semiconductors . W

AOK2-UP01 - February 2, 2015
AOK2-UP01 - February 2, 2015

Coherent Control of Atoms and Molecules
Coherent Control of Atoms and Molecules

... and David Jonas. In the experiment where we compressed ultrafast optical pulses with spinning molecules, Mark Baertschy (a postdoc of Chris Green's, who is a fellow here at JILA) modeled the experiment, and helped us understand how we can optimize the compression experiment. ...
G 3 Geochemistry Geophysics
G 3 Geochemistry Geophysics

Adaptive Control of Ultrashort Laser Pulses for
Adaptive Control of Ultrashort Laser Pulses for

... was introduced that works as a coherent source of light—from this time on, the properties of the light field could be controlled in a well-defined manner and were used as an instrumental tool of high precision. Only few decades later, in the era of photonics, ultrashort pulses of this laser light ha ...
Ultrasensitive absorption spectroscopy with a high
Ultrasensitive absorption spectroscopy with a high

Integrated Optic/Nanofluidic Detection Device with Plasmonic Readout
Integrated Optic/Nanofluidic Detection Device with Plasmonic Readout

... integrating optical and fluidic components, devices have become smaller, cheaper, and more robust. By moving from macro-fluidic to microfluidic tools, sample volumes are reduced, saving money and time in reagent use, and enabling higher resolution detection. However, current integrated lab-on-a-chip ...
OPTICAL ELEMENTS, SYSTEMS, OR APPARATUS (G02F takes
OPTICAL ELEMENTS, SYSTEMS, OR APPARATUS (G02F takes

Paraxial Optics
Paraxial Optics

Ultrafast Carrier and Lattice Dynamics in Highly
Ultrafast Carrier and Lattice Dynamics in Highly

< 1 2 3 4 5 6 ... 61 >

Super-resolution microscopy

Super-resolution microscopy is a form of light microscopy. Due to the diffraction of light, the resolution of conventional light microscopy is limited as stated by Ernst Abbe in 1873. A good approximation of the resolution attainable is the full width at half maximum (FWHM) of the point spread function, and a precise widefield microscope with high numerical aperture and visible light usually reaches a resolution of ~250 nm.Super-resolution techniques allow the capture of images with a higher resolution than the diffraction limit. They fall into two broad categories, ""true"" super-resolution techniques, which capture information contained in evanescent waves, and ""functional"" super-resolution techniques, which use clever experimental techniques and known limitations on the matter being imaged to reconstruct a super-resolution image.True subwavelength imaging techniques include those that utilize the Pendry Superlens and near field scanning optical microscopy, the 4Pi Microscope and structured illumination microscopy technologies like SIM and SMI. However, the majority of techniques of importance in biological imaging fall into the functional category.There are two major groups of methods for functional super-resolution microscopy: Deterministic super-resolution: The most commonly used emitters in biological microscopy, fluorophores, show a nonlinear response to excitation, and this nonlinear response can be exploited to enhance resolution. These methods include STED, GSD, RESOLFT and SSIM. Stochastic super-resolution: The chemical complexity of many molecular light sources gives them a complex temporal behaviour, which can be used to make several close-by fluorophores emit light at separate times and thereby become resolvable in time. These methods include SOFI and all single-molecule localization methods (SMLM) such as SPDM, SPDMphymod, PALM, FPALM, STORM and dSTORM.On October 8th, 2014, the Nobel Prize in Chemistry was awarded to Eric Betzig, W.E. Moerner and Stefan Hell for ""the development of super-resolved fluorescence microscopy,"" which brings ""optical microscopy into the nanodimension"".
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