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PRODUCT INNOVATIONS
Toptica Photonics - diode laser
Diode laser system - Key wavelength for bioanalytics using direct single-mode diode

Previously 488 nm excitation was obtained solely by Argon gas lasers, frequency doubled solid state lasers or optically pumped semiconductor lasers. All of these sources are based on rather sophisticated setups and hence express one or more inherent drawbacks such as extensive power requirements and / or heat generation, being bulky, complex optical setup, the need of expensive external modulation (AOMs, AOTFs etc.). The iBeam / iPulse laser system is based on a high quality single-mode laser diode directly lasing at 488 nm, hence benefiting from a monolithic design and lack of free space resonators. The straightforward design, combined with great industrial-fit laser parameters, made diode laser technology extremely successful in the world of photonics.

Key specifications of iBeam / iPulse 488 include:
  • Excellent beam quality, i.e. wave front error < 0.05 ?, M² < 1.2
  • Lowest intensity noise at 488 nm available (< 0,2%)
  • Direct modulation capability avoids power killers like AOM/EOMs
  • Ultrafast asynchronous pulse modulation up to 250 MHz (iPulse)
  • Highest single-mode fiber coupling efficiencies, i.e. > 60 % guaranteed, > 75 % typical and 87 % demonstrated
  • Highest power stability (< 0.5 % drift within 48 hours) 
With already 20mW of direct diode laser power at 488 nm available and a clear roadmap leading to even higher power levels, the iBeam / iPulse represents a favorable choice for many demanding industrial applications.
The beam diameter is approx. 1.2 mm 1/e², close to its gas or solid state laser counterparts, making switching to an iBeam / iPulse a smooth process. Comparing such diode lasers to gas or solid state lasers, the vital benefit is its direct modulation capability. The iPulse 488 offers both fast digital and analog modulation. Thus external AOMs or similar devices become redundant. On special request, the iPulse switches between 3 power levels within few nanoseconds. Typical warm-up time lasts no longer than 5 minutes, significantly less than common Argon lasers require.

To support demanding applications, high attention is paid to best optical performance. High quality optics components and cutting-edge microoptical adjustment devices contribute to convert the diode’s standard elliptical emission into a circular (ellipticity typically < 5 %), nearly perfect Gaussian beam.

All lasers can be optionally coupled to single-mode fibers by TOPTICA’s OEM proven FiberDock unit. Due to the patented flexure mount unit, easy adjustment, best long-term stability and highest coupling efficiencies are achieved.

Besides perfect optical performance, a superior electrical control is crucial in many applications: Sophisticated low noise electronics guarantees an unmatched power drift of less than 0.5 % over at least 48 hours, making the iBeam / iPulse best in class.
Easy and reliable control of all laser parameters and status reports are achieved by the RS 232 serial interface and a standard terminal software package (e.g. WindowsHyperTerminal®).

Typical applications for the iBeam and iPulse series include:
  • Flow cytometry
  • Confocal microscopy
  • Micro lithography
  • Computer-to-plate
  • Disc mastering
  • Ellipsometry
  • Retina scanning
  • Fluorescin angiography


PRODUCT INNOVATIONS
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AMS Technologies
Pulsed fiber lasers for range finding and telemetry go
Rauscher - Photonfocus
World fastest camera-link-base camera for machine-vision go
Rofin Sinar Laser
LED Processing with lasers go
TECHNOLOGY
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IBM
Computer Chips Communicate Using Pulses Of Light go
Berkeley Lab
Trapping sunlight with silicon nanowires go
Fraunhofer-Institut für Lasertechnik ILT
Laser Technology at it's Best - Anniversary Celebration in Aachen go
Evonik
World's largest lithium ceramic battery to store wind and solar energy go
American Chemical Society
Laser surgery technique gets new life in art restoration go
MIT
First germanium laser go
Made in IBM Labs:
IBM sets world record by creating high-efficiency solar cell made from entirely earth-abundant materials go
AAXA Technologies
Worlds first laser pico projector with an internal media player go
Linköping University / Umeå University
Super material will make lighting cheaper and fully recyclable  go
Siemens
Ultra-fast LED Flash Unit for Quality Checks go
University of Bristol
Tying light in knots go
Pennsylvania State University
Wireless optical transmission key to better indoor communications go
Laser Zentrum Hannover e.V. (LZH)
LZH-Nanoparticles on the rise go
Universität Stuttgart
Giant Rydberg atoms confined in a micro-glasscell go
Max-Planck-Institut für Kernphysik
A matterless double-slit go
Northwestern University
New Quantum Cascade Lasers Emit More Light Than Heat go
Aston University
Engineers Create World's Longest Laser go
Sandia National Laboratories
New mini solar cells for clothing that generate electricity go
BMBF-Project "So-Light"
New materials and optics for ultra-thin OLEDs go
Munich-Centre for Advanced Photonics (MAP)
Tumors under fire go
California Institute of Technology (Caltech)
Scientists Film Photons with Electrons go
University of Maryland
Laser light used to create synthetic magnetism go
Boston College
BC Physicists capture elusive "Hot" electrons in ultrathin solar cells go
LIFT Project
EC-funded LIFT Project takes the leadership in fibre lasers go
Julius-Maximilians-Universität Würzburg
Nano-towers fire off single photons go
Fraunhofer ILT
Cost-efficient production process and homogeneous luminosity for OLEDs thanks to micro-scale conductor paths go
National Institute of Standards and Technology
NIST test proves ‘The Eyes Have It’ for ID verification go
Department of Energy's SLAC National Accelerator Laboratory
Science Begins at the World’s Most Powerful X-ray Laser go
University of Adelaide
Pushing light beyond its known limits go
NASA
Laser-powered robot wins in Space Elevator Games go
OSRAM Opto Semiconductors
Super low-profile OLED  go
Max-Planck-Institut
Mobile laser scanning microscope records brain activity go
Fraunhofer-Institut für Lasertechnik (ILT)
Lasers put a shine on metals go
Hamamatsu Photonics
New technology for picosecond photon correlation measurements go
Southeast University in Nanjing
Science Fiction: First artificial blackhole created in lab go
Deutsch-Kanadische Technologie half bei der Aufklärung eines Mordfalls
German-Canadian technology helps solve murder go
UK Medical Research Council
Flashes of laser light are programming the memories of fruit flies go
Max-Planck-Institut für Quantenoptik
Quantum-limited Measurement Method for Nanosensors go
Cornell University
Energy-efficient silicon device compresses light to make ultrafast signals go
Siemens - Osram Opto Semiconductors
New milestone for mobile laser projection go
Fraunhofer IWS
Fibre laser quietly revolutionizes the world go
National Physical Laboratory
Femtoseconds lasers help formation flying go
Fraunhofer ILT
Processing cell - economical automation for laser materials processing, also for small series go
Institute of Physics (IOP)
Light at the speed of a bicycle go
TU Eindhoven / Universität Ulm
Looking deeply into polymer solar cells go
Max-Planck MPQ
"On-the-fly" spectroscopy with a diode laser and a frequency comb go
University of New South Wales (Australia)
AU researchers push CPV to 43% go
University of California - Berkeley
World's smallest semiconductor laser heralds new era in optical science go
Georgia State University
The world’s smallest laser go
University of North Carolina School of Medicine
Breakthrough uses light to manipulate cell movement go
Optics Express
Open Wide and Say "Zap" go
Max Planck Institute of Quantum Optics
Oscillating Ions imitate optical Laser go
Uni Würzburg
Secret revealed: electricity from organic solar cells go
Göteborgs universitet
New laser technique may help find supernova go
Fraunhofer ISE
World record - PV inverter efficiency exceeds 99 percent go
Laser Zentrum Hannover
Environmental protection during laser processing go
Fraunhofer ILT
Radially polarized laser beam enables maximum precision and efficiency in laser materials processing  go
Johannes Gutenberg University Mainz
A multifunctional storage device for light  go
Philips Lumileds
LED closes the yellow gap - full conversion of blue into amber light go
ETH Zürich
World record: an optical transistor from a single molecule go
Quantenphysik
Working towards an optical integrated circuit go
University of Illinois at Urbana-Champaign
World record: Scientists develop fastest light-emitting transistor go
Technische Universität München
The sound of light go
Fraunhofer ILT
Laser beam repairs engine components go
Max-Planck-Institut
Nanoparticles as tiny light sources go
Luxtera
World’s first commercial silicon CMOS photonics fabrication process go
Superresolution
Optical nanoscopy using standard fluorescence microscopes go
Optical Surfaces
Precision microchannel plates enable imaging of deep space go
Fraunhofer ILT
Lasers are making solar cells competitive go
University of Bristol
Scientists demonstrate all-fibre quantum logic go
TOPTICA
Industry Consortium granted ESO Design Contract for Sodium Guide Star Study go
Photons on demand
Novel light sources for secure telecommunication go
Laserzentrum Hannover (LHZ)
Lasers replace gas burners  go
World Record
400 W femtosecond laser for ultra-precise materials processing go
Fraunhofer IPMS
Laser projection systems in measurement and industrial applications go
Institut für Photonische Technologien Jena (IPHT)
Fiber sensors that can be swallowed easily by patients go
Fraunhofer Heinrich-Hertz-Institut
Optical sensors for early detection of pollutants and diseases go
Munich-Centre for Advanced Photonics
New method for full characterisation of individual ultrashort laser pulses go
Fraunhofer Institut
Instant control for laser welding go
Photovoltaics
130 µm thin wafers in 2 years, 80 µm thin wafers in 5 years go
The Department of Energy
The world's largest laser go
LED
LEDs for cars that turn heads go
Max-Planck-Institut
Science Fiction: Laser light controls quantum computer go
Advances in Optics and Photonics
OSA's review journal launches inaugural issue go
Photovoltaics
Black silicon for efficient solar cells go
Max Planck
Defective diamonds for crystal clear microscopy go
Photovoltaics
Laser technology powers efficiency and productivity go
Osram
LED modules and energy-efficient lighting systems on new luxury cruise ship go
Laser Zentrum Hannover e.V. (LZH)
Fighting presbyopia - laser treatment of aging eye lenses may help go
Stanford University
World's smallest writing on a piece of copper go
Laser Zentrum Hannover e.V. (LZH)
Laser Welding for Bonding technical Polymers and Wood Materials go
Fraunhofer-Institut für Nachrichtentechnik, Heinrich-Hertz-Institut
The cockpit of the future go
OSRAM
LED solutions let the 2010 Ford Mustang shine - inside and out go
Infrared light visualizes nanoscale strain fields
Tension in the nanoworld go
LED street lights
European premiere: which is the best street light in the country? go
Fraunhofer ISE
World Record: 41.1% efficiency reached for multi-junction solar cells go
NEWS FROM THE TRADE SHOWS AND CONGRESS
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Messe München International (MMI)
LASER World of PHOTONICS CHINA 2010 stronger than ever in its anniversary year go
LASER World of PHOTONICS 2009
Visitor survey – favorite stands and specialist topics go
Optical Metrology conference
Photonics visionary Späth to be honoured at Optical Metrology conference go
WHO'S MOVED
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John Tyndall Award 2010
Randy Giles receives Tyndall award go
In memoriam
Juan L. Rayces  go
Blaise-Pascal-Price
The winner is Prof. Toshiki Tajima go
MARKET-TRENDS
more articles ( 57 )  more articles ( 57 ) 
Eberhard Karls Universität Tübingen
Near-field microscope yields high precision optical images of an organic semiconductor with 17 nm resolution go
ElectroniCast Consultants
High brightness light emitting diodes - Global Market Forecast & Analysis go
Thomson Reuters
China rapidly catching up in research impact go
EVENTS
more articles ( 6 )  more articles ( 6 ) 
Fraunhofer-Institut für Lasertechnik ILT
Laser Technology at it's Best - Anniversary Celebration in Aachen go
productronica 2009
Shedding light on productronica 2009 go
Final report
LASER World of PHOTONICS 2009 strengthens the industry’s confidence go
PHOTONICS INTERVIEW
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Professor Dr. Dr. Christoph Cremer
The world’s fastest super resolution microscope go
Prof. Dr. Jürgen Popp
Biophotonics at LASER World of PHOTONICS go
Prof. Andreas Tünnermann
The future of our lighting go
APPLICATIONS
Tampoprint
Laser engraving and tampon printing combined go
Rensselaer Polytechnic Institute
Lighting Research Center develops framework for assessing light pollution go


World of Photonics Congress 17 - 22 June 2007 International Congress Centre Munich (ICM)
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 News - 19.03.2010
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