National Repository of Grey Literature 210 records found  beginprevious31 - 40nextend  jump to record: Search took 0.00 seconds. 
SMV-2023-31: JAXA 2023
Hrabina, Jan ; Holá, Miroslava ; Oulehla, Jindřich ; Pokorný, Pavel ; Lazar, Josef ; Šarlejová, Tatiana ; Šlechtický, Stanislav
The contractual research was oriented towards the development of optical frequency references intended for the frequency stabilisation of ultra-compact laser sources. These optical references are based on absorption cells filled with ultra-pure absorption gases and allow precise locking of the lasers with laser spectroscopy methods. The cells will serve as the references of optical frequencies in systems of laser standards intended for space-related research (515-633 nm wavelengths).
SMV-2023-33: HeNe2023
Hrabina, Jan ; Holá, Miroslava ; Oulehla, Jindřich ; Pokorný, Pavel ; Lazar, Josef ; Šarlejová, Tatiana ; Šlechtický, Stanislav
The contractual research was oriented towards the development of optical frequency references intended for the frequency stabilisation of ultra-compact laser sources. These optical references were based on absorption cells filled with ultra-pure absorption gases and they allow precise locking of the lasers with the methods of laser spectroscopy. The cells will serve as the references of optical frequencies in systems of primary length standards (633 nm wavelength).
SMV-2023-32: LPP 3LIF
Hrabina, Jan ; Holá, Miroslava ; Oulehla, Jindřich ; Pokorný, Pavel ; Lazar, Josef ; Šarlejová, Tatiana ; Šlechtický, Stanislav
The contractual research was oriented towards the development of optical frequency references intended for laser-induced fluorescence and laser spectroscopy research. These optical references are based on absorption cells filled with ultra-pure absorption gases.
SMV-2023-30: ILA compact
Hrabina, Jan ; Holá, Miroslava ; Oulehla, Jindřich ; Pokorný, Pavel ; Lazar, Josef ; Šarlejová, Tatiana ; Šlechtický, Stanislav
The contractual research was oriented towards the development of optical frequency reference intended for the frequency stabilisation of ultra-compact semiconductor laser sources. This optical reference is based on an absorption cell filled with ultra-pure absorption gases, and it allows precise locking of the lasers with laser spectroscopy methods. The cell will serve as a reference of optical frequencies in systems of laser standards (532-633 nm wavelengths).
SMV-2022-62: Antireflection of sapphire windows between water/air for visible spectrum of light
Pokorný, Pavel ; Oulehla, Jindřich
Design and deposition of antireflective multilayers for near-perpendicular incidence of visible light on sapphire windows between air and water.
SMV-2022-37: Interferometers for coordinate measurement
Holá, Miroslava ; Hrabina, Jan ; Oulehla, Jindřich ; Pokorný, Pavel ; Lazar, Josef ; Šarlejová, Tatiana ; Šlechtický, Stanislav ; Humeňanská, Jana
The contract research was focused on the development of multi-axis measuring systems using the most accurate method of measurement based on the principle of laser radiation interference. The basic reference is a laser source with a wavelength of 633 nm. Measuring systems are intended for devices requiring measurement accuracy in the order of nanometers.
SMV-2022-34: Multipass cells
Hrabina, Jan ; Holá, Miroslava ; Oulehla, Jindřich ; Pokorný, Pavel ; Lazar, Josef ; Šarlejová, Tatiana ; Šlechtický, Stanislav
The contractual research was oriented towards the development of optical frequency references intended for the frequency stabilisation of ultra-compact laser sources. These optical references are based on absorption cells filled with ultra-pure absorption gases and they allow precise locking of the lasers with the methods of laser spectroscopy. The cells will serve as the references of optical frequencies in systems of laser standards (532 nm wavelengths).
SMV-2022-33: Iodine absorption cells
Hrabina, Jan ; Holá, Miroslava ; Oulehla, Jindřich ; Pokorný, Pavel ; Lazar, Josef ; Šarlejová, Tatiana ; Šlechtický, Stanislav
The contractual research was oriented towards the development of optical frequency references intended for the frequency stabilisation of ultra-compact semiconductor laser sources. These optical references are based on absorption cells filled with ultra-pure absorption gases and they allow precise locking of the lasers with the methods of laser spectroscopy. The cells will serve as the references of optical frequencies in systems of laser standards (600-800 nm wavelengths).
SMV-2022-32: ROA Reference cell
Hrabina, Jan ; Holá, Miroslava ; Oulehla, Jindřich ; Pokorný, Pavel ; Lazar, Josef ; Šarlejová, Tatiana ; Šlechtický, Stanislav
The contractual research was oriented towards developing the optical frequency reference intended for frequency stabilisation of ultra-compact optical fibre-based laser source. This optical reference is based on an absorption cell filled with ultra-pure molecular iodine gas, and it allows precise laser locking with the methods of laser spectroscopy. The cells will serve for referencing 515 nm wavelength laser.
SMV-2022-30: Rectangular cell
Hrabina, Jan ; Holá, Miroslava ; Oulehla, Jindřich ; Pokorný, Pavel ; Lazar, Josef ; Šarlejová, Tatiana ; Šlechtický, Stanislav
The contractual research was oriented towards the development of optical frequency reference intended for frequency stabilisation of ultra-compact laser sources. This optical reference is based on an absorption cell filled with ultra-pure absorption gases, and it allows precise locking of the lasers with the methods of laser spectroscopy. The cell will serve as the reference of optical frequencies in systems of compact laser standard (515 nm wavelength).

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