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WO2003045863A1 - Nouveau materiaux photorefractifs, produits intermediaires destines a leur fabrication et procedes de fabrication - Google Patents

Nouveau materiaux photorefractifs, produits intermediaires destines a leur fabrication et procedes de fabrication Download PDF

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Publication number
WO2003045863A1
WO2003045863A1 PCT/RU2001/000512 RU0100512W WO03045863A1 WO 2003045863 A1 WO2003045863 A1 WO 2003045863A1 RU 0100512 W RU0100512 W RU 0100512W WO 03045863 A1 WO03045863 A1 WO 03045863A1
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WO
WIPO (PCT)
Prior art keywords
radiation
glass
materials
producing
production
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/RU2001/000512
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English (en)
Russian (ru)
Inventor
Aleksandr Vasilievich Dmitryuk
Nikolai Timofeevich Timofeev
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ooo 'corning'
Original Assignee
Ooo 'corning'
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ooo 'corning' filed Critical Ooo 'corning'
Priority to PCT/RU2001/000512 priority Critical patent/WO2003045863A1/fr
Priority to AU2002241418A priority patent/AU2002241418A1/en
Publication of WO2003045863A1 publication Critical patent/WO2003045863A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03CCHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
    • C03C3/00Glass compositions
    • C03C3/12Silica-free oxide glass compositions
    • C03C3/16Silica-free oxide glass compositions containing phosphorus
    • C03C3/17Silica-free oxide glass compositions containing phosphorus containing aluminium or beryllium
    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03CCHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
    • C03C3/00Glass compositions
    • C03C3/12Silica-free oxide glass compositions
    • C03C3/16Silica-free oxide glass compositions containing phosphorus
    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03CCHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
    • C03C3/00Glass compositions
    • C03C3/12Silica-free oxide glass compositions
    • C03C3/16Silica-free oxide glass compositions containing phosphorus
    • C03C3/19Silica-free oxide glass compositions containing phosphorus containing boron
    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03CCHEMICAL COMPOSITION OF GLASSES, GLAZES OR VITREOUS ENAMELS; SURFACE TREATMENT OF GLASS; SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS, MINERALS OR SLAGS; JOINING GLASS TO GLASS OR OTHER MATERIALS
    • C03C4/00Compositions for glass with special properties
    • C03C4/04Compositions for glass with special properties for photosensitive glass

Definitions

  • the invention is integrated in one material, as is effective, such and laser properties.
  • the known effective materials on the basic aluminum and human glass [ ⁇ . Bo ⁇ au e1: a ⁇ . , SG. Yd. ' ⁇ réelle ⁇ réelle ⁇ participate ⁇ lois Meeting, ⁇ . 15, H * 8, Si, 1997, ⁇ . 1329-1342; ⁇ . G. ⁇ ggge ⁇ u ⁇ vic ⁇ ' perennial ⁇ es ⁇ 1 ⁇ Talk, ⁇ o ⁇ Talk ⁇ predecessor, ⁇ o ⁇ Talk, ⁇ réelle ⁇ ⁇ alliance, ⁇ . 237-249], which, under irradiation, change the refractive index ⁇ by the value ⁇ ⁇ 10 ⁇ 4 -10 ⁇ 3 .
  • the simple solution for the first time solved the problem of producing a portable laser material with a high change in the index of exposure to radiation.
  • P ⁇ s ⁇ avlennaya task ⁇ eshae ⁇ sya s ⁇ zdaniem n ⁇ v ⁇ g ⁇ s ⁇ e ⁇ l ⁇ b ⁇ azn ⁇ g ⁇ ma ⁇ e ⁇ iala on ⁇ sn ⁇ ve ⁇ s ⁇ a ⁇ v schel ⁇ chny ⁇ , schel ⁇ chn ⁇ zemelny ⁇ , ⁇ ed ⁇ zemelny ⁇ elemen ⁇ v and se ⁇ eb ⁇ a, ⁇ y yavlyae ⁇ sya ⁇ mezhu ⁇ chnym or is ⁇ dnym ⁇ du ⁇ m for ⁇ lucheniya ⁇ e ⁇ a ⁇ ivn ⁇ g ⁇ laze ⁇ n ⁇ g ⁇ ma ⁇ e ⁇ iala with vys ⁇ im value ⁇ e ⁇ a ⁇ ivn ⁇ s ⁇ i ⁇ sle v ⁇ zdeys ⁇ viya on is ⁇ dny ma ⁇ e ⁇ ial i ⁇ nizi ⁇ uyuschim radiation ⁇ edel
  • B ⁇ ba, b, b, b, b, b.
  • reaction (1) In the original non-irreversible glass, the silver is available in the form of a cadon ⁇ od + .
  • the category of the ED + unit is responsible for the collection of secondary elec- trons, which are formed during the initialization of a solid body, and change their charge state. This process is described by reaction (1):
  • the second sulfur mixture is thermally unstable and enters into the reaction with the catalytic sulfur module + + , which forms a two-molecule sulfur + one + 2 + : + 2 + ):
  • the intermediate product ⁇ 2 + is also thermally unstable at temperatures above 300 carteique and is in the following reaction: ⁇ Talk 2 + + ⁇ Talk + ⁇ ⁇ Play 3 2+ (3)
  • the central center ⁇ 3 2+ is thermally stable to the temperature range 400-450 ⁇ and it is responsible for the non-functional properties of the ser- ous products.
  • S, ⁇ a, ⁇ , ⁇ , ⁇ 5,
  • Bn ba, bg, bb, b, bb, xie, and is the final product.
  • Fig. 3 demonstrates the absorption of large glass, activated silver (1) and after (2) irradiating radiation.
  • Fig. 4 we presented a) cross-sectional spectra of forced transitions, b) spectroscopic spectra of 3+ in the studied glass (table 1), table 1.
  • Fig. 5 shows a) cross-sectional spectra of forced transitions, b) spectroscopic processes of the 3+ in the studied glass.
  • Source materials in the form of a large glass that contains a silver source are not included in the power supply.
  • Source materials in the form of a large glass that contains a silver source are not included in the power supply.
  • Glasses were synthesized in the amount of 100-400 g. They are characterized by a low temperature range of 1200-1250 ° C, a high technological stability and process.
  • ⁇ ⁇ aches ⁇ ve sy ⁇ evy ⁇ ma ⁇ e ⁇ ial ⁇ v is ⁇ lz ⁇ valis ⁇ mme ⁇ ches ⁇ ie ⁇ ea ⁇ ivy: ⁇ d ⁇ z, Y ⁇ z, ⁇ a ⁇ 0 3 ⁇ z, ⁇ dS0 3 SaS ⁇ z, ⁇ aS ⁇ z, ⁇ 3 ⁇ 0 4, La 2 0 3, ⁇ 2 0 3, ⁇ g 2 0 3, ⁇ 2 0 3, ⁇ 2 0 3 qualifications ⁇ H or ⁇ HF.
  • the loading of biscuits into the crucible was carried out at a temperature of 1150-1200 ° ⁇ , while the cooking time was 30 min for 100 g of glass and up to 4 hours for 400 g of glass.
  • Fort In a number of cases for the prevention of restoration of the serum and the removal of ⁇ -group from the glass The process of melting of molten glass with dried acid was produced.
  • the melted glass was sold to the heated group.
  • the glass was placed in a muffle furnace, where a coarse glass was fired at a temperature of 380-400 ° C for two hours, with the following being cooled.
  • the burnt glass was cut into pieces, from the prepared samples were prepared (0, 2-4) ⁇ 15 ⁇ 20 mm 3 samples for precise measurements.
  • the original product (glass, activated by silver) does not alter its spectral and physical properties when exposed to a long wavelength of 2 nm (long-wavelength). In other words, they are not effective.
  • the glasses with the optically efficient properties were irradiated with one of the forms of the emitting radiation.
  • different types of radiation such as: X-ray, gamma, high-energy elec- tric, etc.
  • X-ray radiation an X-ray tube with a copper antigens was used, which works at an accelerating voltage of up to 50 times. The maximum time of exposure to a sample of 2 cm did not exceed 1 hour.
  • Gamma-ray irradiation was carried out with the help of A radioactive source of 60 , with a dose rate of 100 rad / s and a range of 10 5 -10 8 rad.
  • is the thickness of the layer of glass that has been reduced by radiant radiation
  • k is the magnitude of the shift of the internal radiation band
  • is the constant Planck, with is the speed of light, ⁇ is the energy of the light quantum.
  • ⁇ e ⁇ di ⁇ i ⁇ lucheniya is ⁇ dny ⁇ s ⁇ edineny and s ⁇ ve ⁇ s ⁇ vuyuschi ⁇ ⁇ e ⁇ a ⁇ ivny ⁇ s ⁇ e ⁇ l on i ⁇ ⁇ sn ⁇ ve yavlyae ⁇ sya ⁇ bschey for vse ⁇ s ⁇ edineny ⁇ ablitsy 1.
  • ⁇ aznitsa s ⁇ s ⁇ i ⁇ in is ⁇ dny ⁇ ⁇ liches ⁇ va ⁇ ⁇ m ⁇ nen ⁇ v for ⁇ lucheniya is ⁇ dny ⁇ s ⁇ edineny, ⁇ ye s ⁇ ve ⁇ s ⁇ vuyu ⁇ ⁇ ablitse 1.
  • the refined glass was heated to the heated group.
  • the glass was placed in an electric muffle furnace, where the glass was fired at a temperature of 400 ° ⁇ .
  • the burnt glass was cut into pieces, from the prepared samples 1x15x20 mm 3 were made .
  • the samples from the original product were irradiated with X-ray radiation with an energy of 40 kPa on the X-ray tube of the medicament.
  • the volume of the sample from the antiquity was 1 cm.
  • Typical exposure time is 1 hour.
  • the results of the tests of a series of efficient glass are given in Table 2.
  • the glass of the invention does not possess only convenient and efficient properties, but also a property of transparent luminescent properties that are not suitable for lasers.
  • Fig. 4 The indicated processes are shown in Fig. 4 .
  • the analogous spectroscopic characteristics were allocated by us for the dual-use / anti-skeleton. These glasses are used as an active medium for lasers and optical amplifiers operating in a specific area.

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  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Geochemistry & Mineralogy (AREA)
  • Materials Engineering (AREA)
  • Organic Chemistry (AREA)
  • Glass Compositions (AREA)

Abstract

Le procédé concerne un nouveau matériau photoréfractif correspondant à la formule générale: [Ag32+]x [Ag2O]n [P2O5]m [Al2O3]k [B2O3]l [R2O]p [R'O]s [Ln2O3]t; dans laquelle: x = 0,000005 - 0,01 n = 0,00005 - 0,1 m = 0,4 - 0,75 k = 0 - 0,1 l = 0 - 0,1 p = 0 - 0,5 s = 0 - 0,5 t = 0 - 0,25 R = Li, Na, K, Rb, Cs R' = Mg, Ca, Sr, Ba Ln = La, Er, Yb, Nd, Tb, Ce un produit intermédiaire permettant l'obtenir et correspondant à la formule générale: [Ag2O]n [P2O5]m [Al2O3]k [B2O3]l [R2O]p [R'O]s [Ln2O3]t; dans laquelle n = 0,00005 - 0,1 m = 0,4 - 0,75 k = 0 - 0,1 l = 0 - 0,1 p = 0 - 0,5 s = 0 - 0,5 t = 0 - 0,25 R = Li, Na, K, Rb, Cs R' = Mg, Ca, Sr, Ba Ln = La, Er, Yb, Nd, Tb, Ce et un procédé de fabrication d'un nouveau matériau photoréfractif.
PCT/RU2001/000512 2001-11-28 2001-11-28 Nouveau materiaux photorefractifs, produits intermediaires destines a leur fabrication et procedes de fabrication Ceased WO2003045863A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
PCT/RU2001/000512 WO2003045863A1 (fr) 2001-11-28 2001-11-28 Nouveau materiaux photorefractifs, produits intermediaires destines a leur fabrication et procedes de fabrication
AU2002241418A AU2002241418A1 (en) 2001-11-28 2001-11-28 Novel photorefractive materials, intermediate products for producing said materials and method for the production thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/RU2001/000512 WO2003045863A1 (fr) 2001-11-28 2001-11-28 Nouveau materiaux photorefractifs, produits intermediaires destines a leur fabrication et procedes de fabrication

Publications (1)

Publication Number Publication Date
WO2003045863A1 true WO2003045863A1 (fr) 2003-06-05

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AU (1) AU2002241418A1 (fr)
WO (1) WO2003045863A1 (fr)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2004071983A1 (fr) * 2003-02-12 2004-08-26 Obschestvo S Ogranichennoi Otvetstvennostiju 'corning' Procede pour fabriquer des materiaux photorefractifs
US7697589B2 (en) 2003-07-03 2010-04-13 Pd-Ld, Inc. Use of volume Bragg gratings for the conditioning of laser emission characteristics
US7889776B2 (en) 2004-01-20 2011-02-15 Trumpf Photonics Inc. High-power semiconductor laser

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB974157A (fr) * 1963-03-11 1964-11-04 Commissariat A L'energie Atomique
GB1078793A (en) * 1965-03-05 1967-08-09 Commissariat Energie Atomique Phosphate glass for x-ray, gamma-ray and thermal neutron dosimeters
WO1995026519A1 (fr) * 1994-03-29 1995-10-05 Monash University Procede permettant d'obtenir un effet photorefractif dans des dispositifs optiques, et dispositifs optiques realises selon ce procede
RU2045487C1 (ru) * 1987-03-16 1995-10-10 Вильчинская Наталия Николаевна Радиофотолюминесцентное стекло

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB974157A (fr) * 1963-03-11 1964-11-04 Commissariat A L'energie Atomique
GB1078793A (en) * 1965-03-05 1967-08-09 Commissariat Energie Atomique Phosphate glass for x-ray, gamma-ray and thermal neutron dosimeters
RU2045487C1 (ru) * 1987-03-16 1995-10-10 Вильчинская Наталия Николаевна Радиофотолюминесцентное стекло
WO1995026519A1 (fr) * 1994-03-29 1995-10-05 Monash University Procede permettant d'obtenir un effet photorefractif dans des dispositifs optiques, et dispositifs optiques realises selon ce procede

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2004071983A1 (fr) * 2003-02-12 2004-08-26 Obschestvo S Ogranichennoi Otvetstvennostiju 'corning' Procede pour fabriquer des materiaux photorefractifs
US7697589B2 (en) 2003-07-03 2010-04-13 Pd-Ld, Inc. Use of volume Bragg gratings for the conditioning of laser emission characteristics
US9793674B2 (en) 2003-07-03 2017-10-17 Necsel Intellectual Property, Inc. Chirped Bragg grating elements
US10205295B2 (en) 2003-07-03 2019-02-12 Necsel Intellectual Property, Inc. Chirped Bragg grating elements
US7889776B2 (en) 2004-01-20 2011-02-15 Trumpf Photonics Inc. High-power semiconductor laser

Also Published As

Publication number Publication date
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