Infrared Fiber Lasers

Similar documents
High Power Fiber Laser Technology

High Brightness Fiber Coupled Pump Laser Development

DIODE PUMPED CRYSTALASER

Integrated optics Er-Yb amplifier with potassium ion-exchanged glass waveguides

Single Mode Fiber Lasers

Limiting factors in fiber optic transmissions

Back to Basics Fundamentals of Polymer Analysis

Fiber optic communication

INTRODUCTION FIGURE 1 1. Cosmic Rays. Gamma Rays. X-Rays. Ultraviolet Violet Blue Green Yellow Orange Red Infrared. Ultraviolet.

Module 13 : Measurements on Fiber Optic Systems

Scalable Frequency Generation from Single Optical Wave

HIGH POWER FREE SPACE AND FIBER PIGTAILED ISOLATORS

LIEKKI. Optical Fibers. Features. Applications

Defense & Security Symposium 2004, Kigre Er:glass Publication #144. Eye-Safe Erbium Glass Laser Transmitter Study Q-Switched with Cobalt Spinel

DIRECTIONAL FIBER OPTIC POWER MONITORS (TAPS/PHOTODIODES)

Development of MEMS micromirrors for intracavity laser control

ULTRAFAST LASERS: Free electron lasers thrive from synergy with ultrafast laser systems

Designing and Manufacturing Femtoseconds Ultra-broadband Lasers: Proven, Hands-free Reliability

High-Performance Wavelength-Locked Diode Lasers

Fiber Optics: Fiber Basics

Laboratory #3 Guide: Optical and Electrical Properties of Transparent Conductors -- September 23, 2014

Radiant Dyes Laser Accessories GmbH

Optical Fibers Fiber Optic Cables Indoor/Outdoor

Measuring Laser Power and Energy Output

Status of the Free Electron Laser

Infrared Optical Fiber. Datasheets and Price list. JTIngram Sales and Marketing

Millijoules high master-slave pulse ratio 532 nm picosecond laser

Ti:Sapphire Lasers. Tyler Bowman. April 23, 2015

Wavelength stabilized high-power diode laser modules

Recent developments in high bandwidth optical interconnects. Brian Corbett.

RAY TRACING UNIFIED FIELD TRACING

A More Efficient Way to De-shelve 137 Ba +

Zecotek S Light Projection Network Marketing

Winter College on Optics: Trends in Laser Development and Multidisciplinary Applications to Science and Industry February 2013

Simulation of Gaussian Pulses Propagation Through Single Mode Optical Fiber Using MATLAB . MATLAB

- thus, the total number of atoms per second that absorb a photon is

AMPLIFIED HIGH SPEED FIBER PHOTODETECTOR USER S GUIDE

PIPELINE LEAKAGE DETECTION USING FIBER-OPTIC DISTRIBUTED STRAIN AND TEMPERATURE SENSORS WHITE PAPER

Introduction to Optical Link Design

Quasi-Continuous Wave (CW) UV Laser Xcyte Series

Lecture 3: Fibre Optics

Advanced Laser Microfabrication in High Volume Manufacturing

1. INTRODUCTION ABSTRACT

Radiation-Resistant Single-Mode Optical Fibers

EFFICIENT USE OF SHORT PULSE WIDTH LASER FOR MAXIMUM MATERIAL REMOVAL RATE Paper# M602

High power fiber lasers and amplifiers

Specifying Plasma Deposited Hard Coated Optical Thin Film Filters. Alluxa Engineering Staff

SINGLEMODE OR MULTIMODE FIBER OPTIC PATCHCORDS

Analytical Testing Services Commercial Price List ManTech International Corporation January 2016

IPG Photonics Corporation. Second-Quarter 2013 Conference Call Prepared Remarks

How To Read A Fiber Optic Sensor

100-W, 105-µm, 0.15NA Fiber Coupled Laser Diode Module

Scanning Near Field Optical Microscopy: Principle, Instrumentation and Applications

Real-world applications of intense light matter interaction beyond the scope of classical micromachining.

Luminescence and Optical Properties of Tm 3+ :TeO 2 - ZnO-TiO 2 Glasses for Fiber Optic Applications

OPTICAL FIBERS INTRODUCTION

FIBER LASER STRAIN SENSOR DEVICE

ROFIN FL SERIES. High Brightness Fiber Lasers Precise, Fast and Reliable.

VOLUME BRAGG GRATINGS TM A NEW PLATFORM TECHNOLOGY FOR WDM APPLICATIONS. Boris L. Volodin, Sergei V. Dolgy, Elena D. Melnik and Vladimir S.

Incoherent beam combining using stimulated Brillouin scattering in multimode fibers

CHAPTER 4 MULTI-WAVELENGTH BRILLOUIN BISMUTH /ERBIUM FIBER LASER. The telecommunications industry has tremendous progress for capacity over the

Fundamentals of Optical Communications

SpectraTec II. Polarized Multi-Laser Source BLUE SKY RESEARCH WAVELENGTHS. The SpectraTec II

A continuously tunable multi-tap complexcoefficient microwave photonic filter based on a tilted fiber Bragg grating

HIGH POWER FIBER OPTIC PATCHCORDS

Acousto-optic modulator

Broadband THz Generation from Photoconductive Antenna

MINIMIZING PMD IN CABLED FIBERS. Critical for Current and Future Network Applications

Understanding Laser Beam Parameters Leads to Better System Performance and Can Save Money

PUMPED Nd:YAG LASER. Last Revision: August 21, 2007

Synthetic Sensing: Proximity / Distance Sensors

Fiber Optic Specifications

Integrated Photonic. Electronic. Optics. Optoelettronics. Integrated Photonic - G. Breglio L1. Quantum Mechanics Materials Science Nano/Bio-photonic

Laser-Optimized Fiber

Reflectance Characteristics of Accuflect Light Reflecting Ceramic

Mode-Locked Femtosecond Titanium:Sapphire Laser. Version Trestles-50

Development of certified reference material of thin film for thermal diffusivity

ILV. Laser Welding: Line Scanners for Beam Shaping and Guiding. Alfred G. Arlt. Sulzbacher Str Schwalbach/Taunus DIPL.-ING. ALFRED G.

Un-cooled Multimode Pump Laser Module for Telecom Applications

Short overview of TEUFEL-project

Photonic components for signal routing in optical networks on chip

The Conversion Technology Experts. Fiber Optics Basics

Example of SOP for IR Laser

Fiber Optics: Engineering from Global to Nanometer Dimensions

FIBER OPTIC COMMUNICATIONS: TECHNO-ECONOMICS

High Power and Low Coherence Fibre-optic Source for Incoherent Photonic Signal Processing

Compact Sensors - S8 Series. Compact size and high performance for the most challenging detection applications

Preview of Period 3: Electromagnetic Waves Radiant Energy II

Coating Thickness and Composition Analysis by Micro-EDXRF

Nano Optics: Overview of Research Activities. Sergey I. Bozhevolnyi SENSE, University of Southern Denmark, Odense, DENMARK

Attenuator Integrated With Input Tap (voltage control)

Power Laser Trends. Dr. Ch. Harder July 2, 2009

Amplifier for Small Magnetic and Electric Wideband Receiving Antennas (model AAA-1B)

Surface plasmon nanophotonics: optics below the diffraction limit

Transcription:

Infrared Fiber Lasers Dr. Shibin Jiang President/CEO AdValue Photonics Inc. Tucson, Arizona

Free-Space & Fiber Lasers Fiber pigtailed laser diodes Fiber pigtailed laser diodes From scientific point of view fiber laser is very simple

Features of Fiber Lasers Seed Fiber Laser Isolator Amplifier Fiber pigtailed laser diodes Fiber pigtailed laser diodes Double cladding gain fiber Seed Fiber Laser Fiber pigtailed laser diodes Fiber pigtailed laser diodes Single mode guiding Multimode pumping Excellent Brightness Converter

Features of Fiber Lasers Small Fibers Compact Simple Design Reliable Simple Manufacturing Process Low Cost Lots, lots, and lots of engineering work Industrial engineers love it

Laser Companies Newport Corp/Spectra Physics Range 15.22-15.60 52 week 13.23-20.85 Open 15.56 Vol / Avg. 161,277.00/134,806.00 Mkt cap 612.21M P/E 20.28 Coherent, Inc Range 62.15-64.00 52 week 52.15-69.67 Open 63.95 Vol / Avg. 160,829.00/144,454.00 Mkt cap 1.57B P/E 20.35 Founded over 50 years ago as the first commercial laser company, Spectra-Physics delivers breakthrough technologies that transform the way businesses operate and people live. Founded in 1966, Coherent, Inc. is one of the world's leading providers of lasers and laser-based solutions for scientific, commercial and industrial customers competing in the most demanding markets.

Fiber Laser Company IPG Photonics Corporation Range 85.50-87.74 52 week 69.86-102.49 Open 87.74 Vol / Avg. 375,455.00/280,054.00 Mkt cap 4.71B P/E 19.21 IPG was founded in 1990 in Russia by physicist Valentin P. Gapontsev, a pioneer in the field of fiber lasers, in the basement of a small laboratory in the Institute of Radio Engineering near Moscow.

What is glass? Most People A transparent solid that breaks easily Chalcogenide and metallic glasses are opaque in the visible spectrum

What is glass? High-strength glass Bulletproof glasses Glass Bridge in Grand Canyon

What is glass? We can control the refractive index and dispersion

What is glass? Glass Scientists Solid with liquid like structure Noncrystalline solid Amorphous solid Supercooled liquid Product of fusion which has been cooled to a rigid condition without crystallizing (ASTM)

Silica Glass Silica: SiO 2 It is sand

Glass Structure From Silica to Silicate More non-bridging oxygen, loose glass structure

Glass Types Silica Silicate, borate, phosphate, germanate, tellurite, aluminate, borosilicate, borophosphate, borogermanate, aluminosilicate, aluminophosphate, fluorophosphate Non-silica oxide glasses Oxide glasses Fluoride glass, chalcogenide glass, halide glass Non-oxide glasses

Multi-Component Oxide Glass Non-silica Oxide Glass Multi-component oxide glass Glass network former; modifier; intermediate SiO 2 ; P 2 O 5 ; B 2 O 3 ; GeO 2 K 2 O; Li 2 O; Na 2 O; BaO; Al 2 O 3 ; B 2 O 3 ; CaO; MgO

Multi-Component Oxide Glass For Laser Application Advantages: Large glass forming area Low process temperature Low cost High rare-earth solubility High or low phonon energy High resistance to photodarkening Doping concentration up to 50 wt% compare to 0.5wt% in silica Phosphate glass has higher phonon energy than silica; Germanate glass has lower phonon energy than silica

Motivation for 2mm Fiber Laser 2-micron laser: Absorption co. 100 cm -1 ; 1-micron laser: Absorption co. 0.5 cm -1 ; Absorption & Penetration Depth in Water Applications Mid IR generation Medical Remote sensing Lidar Pumping source for mid-infrared laser Retina Safe Wavelength 2mm laser is better than 1mm laser for many applications

1900nm 800 nm 1470nm Cross-relaxation Reverse Cros-relaxation AdValue Photonics Cross-relaxation Energy Transfer of Tm 3+ 3 H 4 Energy (10 3 cm -1 ) 0 10 20 1 G 4 3 F 2,3 3 H 4 N 3 3 H 5 N 2 3 F 4 N 1 3 H 6 N 0 Pump @ 0.8mm Laser @ 1.9mm Tm:YAG 5wt% Tm 2 O 3, Quantum efficiency ~200% 3 H 5 3 F 4 3 H 6 L. Esterowitz s group at NRL

Glass Fabrication

Absorption Spectra of Tmdoped Core Glasses 7 Absorption coefficient[cm -1 ] 6 5 4 3 2 4% 5% 7.5% 10% 12.5% 3.5 1 0 400 500 600 700 800 900 1000 1100 1200 1300 1400 1500 Wavelength[nm] Absorption coefficient[cm -1 ] 3 2.5 2 1.5 1 2% 3% 4% 5%-2 5%-3 6% 0.5 0 500 700 900 1100 1300 1500 1700 1900 2100 2300 2500 Wavelength[nm] AdValue Photonics Inc Proprietary Information

Emission Spectra of Tmdoped Core Glasses 2wt% 5wt% 3 H 4-3 F 4 transition 3 F 4-3 H 6 transition AdValue Photonics Inc Proprietary Information

Cross-relaxation Energy Transfer of Tm 3+ W/O Cross-Relaxation Energy Transfer W/ Cross-Relaxation Energy Transfer 3 H 4 3 H 4 Spontaneous emission @ 1.5 mm Non-radiative decay Spontaneous emission @ 1.5 mm Non-radiative decay 3 F 4 3 F 4 Spontaneous emission @ 0.8 mm Spontaneous emission @ 1.8 mm Spontaneous emission @ 0.8 mm Spontaneous emission @ 1.8 mm 3 H 6 3 H 6 AdValue Photonics Inc Proprietary Information

Fiber Fabrication High Gain Specialty Fibers (Fiber Drawing Tower) Cladding glass tube Core glass rod (Fiber Preforms)

Tm 3+ -Doped Silicate Fibers

Fusion Spliced Joint Tm-doped silicate fiber SMF-28 fiber Fiber core

High Laser Efficiency 18μm core and 20cm long fiber. HR dielectric mirror and 4% Fresnel reflection. 68.3% slope efficiency Quantum Efficiency >180% Gain >5dB/cm Jihong Geng, Qing Wang, Tao Luo, Shibin Jiang, Farzin Amzajerdian, Single-frequency narrow-linewidth Tm-doped fiber laser using silicate glass fiber, Optics Letters, Vol. 34, No.22, 3493-3496 (2009). 25

Single Frequency 2mm Fiber Laser 1570nm fiber laser 976nm LD Er fiber ~500mW @1575nm Tm fiber 2 cm Isolator 40mW @1950nm Laser Mode 1.2 1 0.8 0.6 0.4 10cm cavity length 0.07nm T(l) grating laser mode Laser Mode 1.2 1 0.8 0.6 0.4 2cm cavity length 0.07nm T(l) grating laser mode 0.2 0.2 0 0 0.1 0.2 0.3 0.4 Wavelength (nm) 0 0 0.1 0.2 0.3 0.4 Wavelength (nm) Jihong Geng, Qing Wang, Tao Luo, Shibin Jiang, Farzin Amzajerdian, Single-frequency narrow-linewidth Tm-doped fiber laser using silicate glass fiber, Optics Letters, Vol. 34, No.22, 3493-3496 (2009).

2mm Q-Switched Fiber Laser Jihong Geng, Qing Wang, Zack Jiang, Tao Luo, Shibin Jiang, and Gregory Czarnecki, Kilowattpeak-power, single-frequency, pulsed fiber laser near 2 μm,, / Vol. 36, No. 12 / OPTICS LETTERS, pp.2293, June 15, 2011

Modulation Instability in Long Single-mode Fiber ~300W peak power pulses in a 75m fiber 1kW peak power pulses in a 5m fiber. 28

Q-Switched Laser - High Power 2 mm Q-Switched High Power Laser: AP-Tm-QS01 Average power 10W Pulse width 20-200 ns Rep. rate 10 to 30 khz Peak power up to 10 kw Polarization: random (option: linear polarization) Collimated single mode output Package dimensions: 449(W) x 433(D) x 133(H) mm

Pulsed Single Frequency Fiber Laser Pulsed Single-Frequency Fiber Laser AP-P-SF (Wavelength: 2 µm, 1.55 µm, 1 µm) New The pulsed single-frequency fiber lasers are designed to provide the highest pulse energy in a single longitudinal mode. This series of products at 2 µm, 1.55 µm, and 1 µm provide new capabilities to research and industry applications. With their compact size, high efficiency, low maintenance, and ease of operation, AdValue Photonics fiber lasers provide many advantages over traditional bulk solid state lasers. 30

Power (W) AdValue Photonics 2 micron Pulsed Single- Frequency Laser Output 18 16 14 12 10 8 6 4 2 0 1950nm; 50kHz; 150ns 1 3 5 7 Reference Voltage(V) AdValue Photonics Proprietary Information

Pulse Trace ~150ns AdValue Photonics Proprietary Information

Pulse Shaping AdValue Photonics Proprietary Information

Broad ASE Spectrum Tm ASE λc=1935nm 1740nm 2140nm 5m long fiber with 10μm core. 84mW ASE output with cladding pump. More than 2 times broader than other reported 2 micron ASE 34

Mode-locked Fiber Laser A resonant saturable absorber mirror. Fiber loop mirror provides ~90% reflection. Cladding pump with 798nm LDs. 30cm Tm-fiber was angle-spliced at both ends to prevent detrimental back reflection. 35

Mode-locked Laser Spectrum Center wavelength is ~ 1980nm and wavelength can be tuned by fiber-sam butting coupling. FWHM of spectrum is ~ 7nm. Dispersion compensation can further broaden spectrum bandwidth. Qing Wang, Jihong Geng, Tao Luo, and Shibin Jiang, 2 micron mode-locked laser with highly thuliumdoped silicate fiber, Optics Letters, Vol. 34, No. 23, 3616-3618 (2009). 36

Normal Dispersion Dominated Regime -10-20 -30-40 3.52A 4.14A 4.58A 724fs -50-60 Power FWHM 18mW 29nm 30mW 42nm 38mW 50nm -70 1860 1890 1920 1950 1980 2010 50nm FWHM was obtained. 724fs pulse width indicates highly chirp. The repetition rate is 30.8MHz, and the pulse energy is >1nJ. 37

Pulse Compression with SMF-28 Use a piece of SMF to compress the pulse. The shortest pulse we measured is ~140fs. With an appropriate grating pair, the pulse width after compression is expected to be less than 100 fs. 38

Mode-Locked Laser - High Power 2 mm Mode-Locked High Power Laser: AP-Tm-ML01 Wavelength 2.0 mm Average power 1W Pulse width 3.5 ps Rep. rate 20 to 40 MHz Pulse energy up to 35 nj Peak power up to 10 kw Spectral bandwidth > 6 nm Polarization: random Collimated single mode fiber output Package dimensions: 449(W) x 433(D) x 133(H) mm

Output Signal (W) AdValue Photonics Er-doped Fiber Laser 14 12 10 l =1560nm K =67.7% 8 6 4 2 0 0 4 8 12 16 20 Absorbed pump power (W)

Innovative & Reliable Industrial Applications 2 µm pulsed fiber lasers can process most metals and nonmetals including clear plastics! Clear Acrylic Clear Polycarbonate Optical fiber striping Transparent plastic spot welding The Fiber Laser Experts

Innovative & Reliable 2 µm Pulsed Welding PMMA thickness ~ 1 mm PMMA thickness ~ 2 mm PVC thickness ~ 1 mm PVC Nylon Film thickness 30 µm on 90 µm PC thickness ~250 µm PET Film thickness ~250 µm Clear Plastic Welding No Apparent Surface Disturbance The Fiber Laser Experts

Innovative & Reliable Company Overview Founded in 2007 Located in the Optics Valley Tucson, AZ Consistent Profitable Growth Outstanding Technical Team (10+ PhD) Innovative and Award Winning Products Dedicated Application Lab Glass and Fiber Fabrication Facility The Fiber Laser Experts

Innovative & Reliable Vertical Integration Enables Innovative Solutions Flexible Fiber Design Innovative Solutions Higher Doping Concentrations Short Gain Fiber Length Custom Core Sizes Minimized Intra-Cavity Nonlinearities Enables Shorter Pulse Width Higher Pulse Energy Higher Peak Power Higher Average Power Raw Materials Laser Systems Raw Material Composition Proprietary Glass Custom Preform Precision Fiber Drawing Fiber Laser & Light Source The Fiber Laser Experts

Innovative & Reliable Manufacturing 15,000 sq ft Area Extensive Test and Characterization Equipment for Quality Control Ability to Quickly Scale Production with Customer Demand Reliability Test Equipment Onsite or at Contracted Test Facilities Highly Skilled Manufacturing Engineers and Technicians Manufacturing Operations You Can Rely On The Fiber Laser Experts

Innovative & Reliable Key Milestones All-Fiber Isolator Application Lab Opens In Tucson World s First Q-Switched 2 µm Fiber Laser R&D 100 Award 2 µm Mode-Locked Fiber Laser First Product Shipped 2 µm CW and Single Frequency Introduced Company Founded 2 µm Fiber Amplifier and ASE Source Introduced The 2 µm Fiber Laser Experts Company Confidential

2mm CW 2mm Q- Laser Switched Laser 2mm Mode- Locked Laser 2mm Single Frequency Laser 2mm Amplifier 2mm ASE Source Mid-IR Freq. Comb Rare-Earth Doped Specialty Glasses and Fibers

We develop laser glasses and fibers We develop fiber lasers Fiber lasers have a variety applications Commercialized these new technologies To start a laser company is challenging and enjoyable