FIELD: process engineering.
SUBSTANCE: invention relates to a monocrystal with a garnet-type structure to be used in optical communication and laser processing devices. This monocrystal is described by general formula (Tb3-xScx)(Sc2-yAly)Al3O12-z, where 0<x<0.1; 0≤y≤0.2; 0≤z≤0/.3.
EFFECT: translucent monocrystal that can inhibit cracking at cutting.
5 cl, 3 dwg, 1 tbl, 5 ex
| Title | Year | Author | Number | 
|---|---|---|---|
| SINGLE CRYSTAL, METHOD FOR PRODUCING SAME, OPTICAL INSULATOR AND OPTICAL PROCESSOR USING SAME | 2010 | 
 | RU2527082C2 | 
| GARNET MONOCRYSTAL, OPTICAL INSULATOR AND OPTICAL PROCESSOR | 2011 | 
 | RU2528669C2 | 
| METHOD FOR MANUFACTURING TERBIUM OXIDE-BASED MAGNETO-OPTICAL CERAMICS FROM A NANOPOWDER SYNTHESISED BY LASER SPUTTERING OF A TARGET | 2021 | 
 | RU2773727C1 | 
| METHOD OF PRODUCING OPTICALLY TRANSPARENT GARNET MONOCRYSTALS | 2013 | 
 | RU2560356C1 | 
| PHOSPHOR AND RADIATION DETECTOR | 2015 | 
 | RU2670919C9 | 
| MONOCRYSTAL WITH GARNET STRUCTURE FOR SCINTILLATION SENSORS AND METHOD OF ITS PRODUCTION | 2017 | 
 | RU2646407C1 | 
| METHOD OF PRODUCING TRANSPARENT HIGH-ALLOY ER:YAG-CERAMICS | 2018 | 
 | RU2697561C1 | 
| METHOD FOR REGULATING THE CONTENT OF GALLIUM IN SCINTILLATORS BASED ON GADOLINIUM-GALLIUM GARNETS | 2016 | 
 | RU2670865C2 | 
| SCINTILLATION MATERIAL AND METHOD FOR ITS PRODUCTION | 2020 | 
 | RU2723395C1 | 
| SCINTILLATOR, RADIATION DETECTOR AND METHOD FOR DETECTING RADIATION | 2012 | 
 | RU2596765C2 | 
Authors
Dates
2014-12-27—Published
2011-07-22—Filed