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High Gain Raw Synthetic Ruby Excellent Thermal Conductivity For Laser Machine

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Buy cheap High Gain Raw Synthetic Ruby Excellent Thermal Conductivity For Laser Machine from wholesalers
  • Buy cheap High Gain Raw Synthetic Ruby Excellent Thermal Conductivity For Laser Machine from wholesalers
  • Buy cheap High Gain Raw Synthetic Ruby Excellent Thermal Conductivity For Laser Machine from wholesalers

High Gain Raw Synthetic Ruby Excellent Thermal Conductivity For Laser Machine

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Brand Name:zmkj
Model Number:ruby block
Price:by case by color
Payment Terms:L/C, T/T
Supply Ability:1000pcs/months
Delivery Time:20days
Company Data
Verified Supplier
Contact Person Wang
Business Type: Manufacturer Agent Importer Exporter Trading Company
Officials: Room.1-1805,No.1079 Dianshanhu Road,Qingpu Area Shanghai city, China /201799
Quality: Quality Certifitation Available
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Product Details

synthetic ruby optical glass window,color sapphire glass lensTi sapphire Wafer,Ti doped Al2O3 Crystal for laser machine,ruby ball,ruby rod lens,


Titanium Sapphire Laser Crystals

Titanium doped sapphire(Ti3+:Al2O3) is widely used for tunable lasers and femtosecond solid-state lasers.It was first used as a gain medium in 1986, and till now, it is still the best material for ultrashort pulse generation. The substrate-sapphire has good physical and optical properties. High thermal conductivity and good alleviating thermal effects provide the usability for high power laser.

Features:

• Best materials for ultrashor pulse generation

• Tunable range from 600-1100nm

• High gain

• Could be pumped by shor pulse flash lamps

• Good physical and optical propertiesProperties of Ti:sapphire

• Sapphire (monocrystalline Al2O3) has an excellent thermal conductivity, alleviating thermal effects even for high laser powers and intensities.

• The Ti3+ ion has a very large gain bandwidth (much larger than that of rare-earth-doped gain media), allowing the generation of very short pulses and also wide wavelength tunability(typically using a birefringent tuner). The maximum gain and laser efficiency are obtained around 800 nm. The possible tuning range is ≈ 650 nm to 1100 nm, but different mirror sets are normally required for covering this huge range, and exchanging mirror sets is a tedious task. (The number of mirror sets required can be reduced by using ultrabroadband chirped mirrors.)

• There is also a wide range of possible pump wavelengths, which however are located in the green spectral region, where powerful laser diodes are not available. In most cases, several watts of pump power are used, sometimes even 20 W. Originally, Ti:sapphire lasers were in most cases pumped with 514-nm argon ion lasers, which are powerful, but very inefficient, expensive to operate, and bulky. Other kinds of green lasers are now available, and frequency-doubled solid-state lasers based on neodymium-doped gain media are widely used. The pump wavelength is then typically 532 nm, with a slightly reduced pump absorption efficiency compared with 514 nm.

• The upper-state lifetime of Ti:sapphire is short (3.2 μs), and the saturation power is very high. This means that the pump intensity needs to be high, so that a strongly focused pump beam and thus a pump source with high beam quality is required.

• Despite the huge emission bandwidth, Ti:sapphire has relatively high laser cross sections, which reduces the tendency of Ti:sapphire lasers for Q-switching instabilities.

EndFragment

Applications:

• Laser spectroscopy

• LIDARs

• Medial laser

Meta-Photonics Ti:sapphire

• Grown by Thermal Exchange Method

• Figure of Merit (FOM) value: 150-350

• Absorption coefficient:0.3~3.5cm-1

• Maximal Size: dia150mm

Custom design prouction (special doping concentration, shape, coating)

High Gain Raw Synthetic Ruby Excellent Thermal Conductivity For Laser Machine

MATERIAL PHYSICAL AND LASER PROPERTIES:

Chemical formulaTi3+:Al2O3
Crystal structurehexagonal
Lattice parameters, Åa = 4.748; c = 12.957
Refractive indexesnp = 1.759; nm = 1.767
Birefrigence0.0082
Density, g/cm33.98
Mohs hardness9
Thermal conductivity at 25°C, W x cm-1 x °K-1-
perpendicular to c-axis0.35
parallel to c-axis0.33
Specific heat at 18°C, J x kg-1 x °K-1761
Thermal expansion coefficient (20 - 100°C)-
perpendicular to c-axis4.78 x 10-6 x °K-1
parallel to c-axis5.31 x 10-6 x °K-1
Syngonytriangular
Axial characteristicuniaxial
Rods with round cross-sections and slabs are manufactured:
Tuning range, nm680 - 1100
Pumping range, nm450 - 532
Ti dopant concentration, at.%0.02 ÷ 0.35
Absorption coefficient at 510 nm, cm-10.5 ÷ 2.5
FOM>200
Orientation90° to c axis
Geometryflat-flat / Brewster
Endsunparallelity10"
Flatness0.2
Orientation tolerance< 5°
Broadband AR coatings, %< 0.2
Diameter, mm(3 ÷ 40) ± 0.1
Length, mm(10 ÷ 140) ± 0.5

We supply rods and slabs with different cross-sections, dimensions and coatings. Different dopant compositions

with different concentrations are available for specific customer requirements.


other Sapphire product also can be provided

High Gain Raw Synthetic Ruby Excellent Thermal Conductivity For Laser Machine

Pictures size spec

Grade: optical grade without bubble,

size:(pictures sizes)dia10mml ball ,dia50.8x1.0mmt,(dia1~100mm ok)

Orientation:C(0001)±0.5°,

surface:polished/lapped either ok

color grade:(picture)block5#, ingot 2#,

High Gain Raw Synthetic Ruby Excellent Thermal Conductivity For Laser Machine

FAQ:

1. What's your payment terms?

T/T AD or Irrevocable L/C.
2. What's your delivery time?
Usually we will arrange the shipment within 7 to 25 days.

3. How about the validity of the products?
According to the products you ordered.
4. What documents you provide?
Usually, we provide Commerical Invoice, Packing List, Bill of loading, COA , and Origin certificate.

If your markets have any special requirements, let us know.

Company Profile

SHANGHAI FAMOUS TRADE CO.,LTD

    SHANGHAI FAMOUS TRADE CO.,LTD. locates in the city of Shanghai, Which is the best city of China, and our factory is founded in Wuxi city in 2014.
   We specialize in processing a varity of materials into wafers, substrates and custiomized optical glass parts.components widely used in electronics, optics, optoelectronics and many other fields. We also have been working closely with many domestic and oversea universities, research institutions and companies, provide customized products and services for their R&D projects.
    It's our vision to maintaining a good relationship of cooperation with our all customers by our good reputatiaons.
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