The aim of the purchase is to acquire a femtosecond laser to initiate the optical Kerr effect and trigger crystallization and chemical reactions in photoenzymes and other photoactive molecules. Femtosecond laser triggering is crucial to be able to do pump-probe measurements at synchrotrons and x-ray free-electron lasers (FELs). To match the needs of various applications at synchrotrons and FELs, the femtosecond system at approximately 1 μm must be versatile in terms of tunable laser parameters, such as pulse energy and repetition rate, over a wide range of values (e.g. single pulse to >10 kHz). Furthermore, the applications in photochemistry would require pulse lengths below 300 fs. Another application is to initiate the optical Kerr effect in aqueous solutions and probe the transient birefringence using another laser or FEL. To be able to reach the threshold of photo-ionization and plasma generation in water, pulse energies of at least 400 μJ must be available.
Sista ansökningsdag
Tidsfristen för mottagande av anbud var 2019-12-12.
Upphandlingen offentliggjordes den 2019-11-04.
Leverantörer
Följande leverantörer nämns i tilldelningsbeslut eller andra upphandlingsdokument:
Meddelande om upphandling (2019-11-04) Objekt Upphandlingens omfattning
Titel: Lasrar
Referensnummer: V-2019-0851
Kort beskrivning:
The aim of the purchase is to acquire a femtosecond laser to initiate the optical Kerr effect and trigger crystallization and chemical reactions in photoenzymes and other photoactive molecules. Femtosecond laser triggering is crucial to be able to do pump-probe measurements at synchrotrons and x-ray free-electron lasers (FELs). To match the needs of various applications at synchrotrons and FELs, the femtosecond system at approximately 1 μm must be versatile in terms of tunable laser parameters, such as pulse energy and repetition rate, over a wide range of values (e.g. single pulse to >10 kHz). Furthermore, the applications in photochemistry would require pulse lengths below 300 fs.
Another application is to initiate the optical Kerr effect in aqueous solutions and probe the transient birefringence using another laser or FEL. To be able to reach the threshold of photo-ionization and plasma generation in water, pulse energies of at least 400 μJ must be available.
The aim of the purchase is to acquire a femtosecond laser to initiate the optical Kerr effect and trigger crystallization and chemical reactions in photoenzymes and other photoactive molecules. Femtosecond laser triggering is crucial to be able to do pump-probe measurements at synchrotrons and x-ray free-electron lasers (FELs). To match the needs of various applications at synchrotrons and FELs, the femtosecond system at approximately 1 μm must be versatile in terms of tunable laser parameters, such as pulse energy and repetition rate, over a wide range of values (e.g. single pulse to >10 kHz). Furthermore, the applications in photochemistry would require pulse lengths below 300 fs.
Another application is to initiate the optical Kerr effect in aqueous solutions and probe the transient birefringence using another laser or FEL. To be able to reach the threshold of photo-ionization and plasma generation in water, pulse energies of at least 400 μJ must be available.
Meddelandeinformation
Originalspråk: engelska 🗣️
Dokumenttyp: Meddelande om upphandling
Kontraktets art: Varor
Reglering: Europeiska unionen – inom ramen för avtalet om offentlig upphandling
Gemensam upphandlingsterminologi (CPV)
Kod: Lasrar📦 Plats för genomförandet
NUTS-region: Stockholm
🏙️
Förfarande
Förfarandetyp: Öppet förfarande
Anbudstyp: Anbud på alla delar
Kriterier för tilldelning
Det ekonomiskt mest fördelaktiga
Referens Datum
Avsändningsdatum: 2019-11-04 📅
Sista anbudsdag: 2019-12-12 📅
Publiceringsdatum: 2019-11-06 📅
Identifierare
Meddelandenummer: 2019/S 214-525061
EUT-S-nummer: 214
Ytterligare information
Visma notice: https://opic.com/id/afvnvwxkao
Objekt Upphandlingens omfattning
Kort beskrivning:
The aim of the purchase is to acquire a femtosecond laser to initiate the optical Kerr effect and trigger crystallization and chemical reactions in photoenzymes and other photoactive molecules. Femtosecond laser triggering is crucial to be able to do pump-probe measurements at synchrotrons and x-ray free-electron lasers (FELs). To match the needs of various applications at synchrotrons and FELs, the femtosecond system at approximately 1 μm must be versatile in terms of tunable laser parameters, such as pulse energy and repetition rate, over a wide range of values (e.g. single pulse to >10 kHz). Furthermore, the applications in photochemistry would require pulse lengths below 300 fs.
The aim of the purchase is to acquire a femtosecond laser to initiate the optical Kerr effect and trigger crystallization and chemical reactions in photoenzymes and other photoactive molecules. Femtosecond laser triggering is crucial to be able to do pump-probe measurements at synchrotrons and x-ray free-electron lasers (FELs). To match the needs of various applications at synchrotrons and FELs, the femtosecond system at approximately 1 μm must be versatile in terms of tunable laser parameters, such as pulse energy and repetition rate, over a wide range of values (e.g. single pulse to >10 kHz). Furthermore, the applications in photochemistry would require pulse lengths below 300 fs.
Another application is to initiate the optical Kerr effect in aqueous solutions and probe the transient birefringence using another laser or FEL. To be able to reach the threshold of photo-ionization and plasma generation in water, pulse energies of at least 400 μJ must be available.
Another application is to initiate the optical Kerr effect in aqueous solutions and probe the transient birefringence using another laser or FEL. To be able to reach the threshold of photo-ionization and plasma generation in water, pulse energies of at least 400 μJ must be available.
The aim of the purchase is to acquire a femtosecond laser (at approx 1μm). It must be versatile in terms of tunable laser parameters such as pulse energy and repetition rate over a wide range of values (e.g. single pulse to >10 kHz). Furthermore, the applications in photochemistry require pulse lengths below 300 fs.
The aim of the purchase is to acquire a femtosecond laser (at approx 1μm). It must be versatile in terms of tunable laser parameters such as pulse energy and repetition rate over a wide range of values (e.g. single pulse to >10 kHz). Furthermore, the applications in photochemistry require pulse lengths below 300 fs.
Purpose of procurement:
Varaktighet: 12 månader
Förfarande
Rättslig grund: 32014L0024
Tidpunkt för mottagande av anbud: 23:59
Språk på vilka anbud eller ansökningar om deltagande kan lämnas in: svenska 🗣️
engelska 🗣️
Anbudens giltighetstid: 2020-03-12 📅
Datum för öppnande av anbud: 2019-12-13 📅
Tidpunkt för öppnande av anbud: 00:00
Kompletterande information Granskningsorgan
Namn: Förvaltningsrätten i Stockholm
Postort: Stockholm
Land: Sverige 🇸🇪
Källa: OJS 2019/S 214-525061 (2019-11-04)
Meddelande om tilldelning (2020-03-02) Objekt Upphandlingens omfattning
Kort beskrivning:
The aim of the purchase is to acquire a femtosecond laser to initiate the optical Kerr effect and trigger crystallization and chemical reactions in photoenzymes and other photoactive molecules. Femtosecond laser triggering is crucial to be able to do pump-probe measurements at synchrotrons and X-ray free-electron lasers (FELs). To match the needs of various applications at synchrotrons and FELs, the femtosecond system at approximately 1 μm must be versatile in terms of tunable laser parameters, such as pulse energy and repetition rate, over a wide range of values (e.g. single pulse to >10 kHz). Furthermore, the applications in photochemistry would require pulse lengths below 300 fs.
Another application is to initiate the optical Kerr effect in aqueous solutions and probe the transient birefringence using another laser or FEL. To be able to reach the threshold of photo-ionization and plasma generation in water, pulse energies of at least 400 μJ must be available.
The aim of the purchase is to acquire a femtosecond laser to initiate the optical Kerr effect and trigger crystallization and chemical reactions in photoenzymes and other photoactive molecules. Femtosecond laser triggering is crucial to be able to do pump-probe measurements at synchrotrons and X-ray free-electron lasers (FELs). To match the needs of various applications at synchrotrons and FELs, the femtosecond system at approximately 1 μm must be versatile in terms of tunable laser parameters, such as pulse energy and repetition rate, over a wide range of values (e.g. single pulse to >10 kHz). Furthermore, the applications in photochemistry would require pulse lengths below 300 fs.
Another application is to initiate the optical Kerr effect in aqueous solutions and probe the transient birefringence using another laser or FEL. To be able to reach the threshold of photo-ionization and plasma generation in water, pulse energies of at least 400 μJ must be available.
Upphandlingens totala värde: 1 656 000 SEK 💰
Meddelandeinformation
Dokumenttyp: Meddelande om tilldelning
Förfarande
Anbudstyp: Ej tillämpligt
Referens Datum
Avsändningsdatum: 2020-03-02 📅
Publiceringsdatum: 2020-03-04 📅
Identifierare
Meddelandenummer: 2020/S 045-106455
Refererar till meddelande: 2019/S 214-525061
EUT-S-nummer: 45
Ytterligare information
Visma notice: https://opic.com/id/afmlsjbzkm
Objekt Upphandlingens omfattning
Kort beskrivning:
The aim of the purchase is to acquire a femtosecond laser to initiate the optical Kerr effect and trigger crystallization and chemical reactions in photoenzymes and other photoactive molecules. Femtosecond laser triggering is crucial to be able to do pump-probe measurements at synchrotrons and X-ray free-electron lasers (FELs). To match the needs of various applications at synchrotrons and FELs, the femtosecond system at approximately 1 μm must be versatile in terms of tunable laser parameters, such as pulse energy and repetition rate, over a wide range of values (e.g. single pulse to >10 kHz). Furthermore, the applications in photochemistry would require pulse lengths below 300 fs.
The aim of the purchase is to acquire a femtosecond laser to initiate the optical Kerr effect and trigger crystallization and chemical reactions in photoenzymes and other photoactive molecules. Femtosecond laser triggering is crucial to be able to do pump-probe measurements at synchrotrons and X-ray free-electron lasers (FELs). To match the needs of various applications at synchrotrons and FELs, the femtosecond system at approximately 1 μm must be versatile in terms of tunable laser parameters, such as pulse energy and repetition rate, over a wide range of values (e.g. single pulse to >10 kHz). Furthermore, the applications in photochemistry would require pulse lengths below 300 fs.
Tilldelning av kontrakt
Datum för avtalstecknande: 2020-01-03 📅
Namn: Light Conversion, UAB
Nationellt registreringsnummer: 222598890
Postadress: Keramiku st. 2B
Postort: Vilnius
Postnummer: LT-10233
Land: Litauen 🇱🇹
E-post: vilija.martinenaite@lightcon.com📧
Webbadress: http://lightcon.com🌏
Upphandlingens totala värde: 1 656 000 SEK 💰
Information om anbud
Antal mottagna anbud: 1
Källa: OJS 2020/S 045-106455 (2020-03-02)