Public Tender (Delivery Service) Procurement Of A Nd:Yag Pump Laser With A Repetition Rate Of 100 Hz For The Operation Of Dye Lasers, As Well As For Direct Application In The Ionization Of Atoms As Part Of The Further Development Of Laser Spectroscopy On The Heaviest Elements In The “Physics” Section. More

GSI Helmholtzzentrum fur Schwerionenforschung GmbH Germany has Released a tender for Public Tender (Delivery Service) Procurement Of A Nd:Yag Pump Laser With A Repetition Rate Of 100 Hz For The Operation Of Dye Lasers, As Well As For Direct Application In The Ionization Of Atoms As Part Of The Further Development Of Laser Spectroscopy On The Heaviest Elements In The “Physics” Section. More in Technology Hardware and Equipment. The tender was released on Aug 08, 2024.

Country - Germany

Summary - Public Tender (Delivery Service) Procurement Of A Nd:Yag Pump Laser With A Repetition Rate Of 100 Hz For The Operation Of Dye Lasers, As Well As For Direct Application In The Ionization Of Atoms As Part Of The Further Development Of Laser Spectroscopy On The Heaviest Elements In The “Physics” Section. More

Deadline - login to view

IT reference number - 90416088

Product classification - Lasers

Organization Details:

  Address - Germany

  Contact details - 565656565

  Tender notice no. - 76454545

  IT Ref Id - 90416088

  Document Type - Tender Notices

Notice Details and Documents:

Description - Description: Type and scope of performance: For the operation of dye lasers, as well as for direct application in the ionization of atoms as part of the further development of laser spectroscopy on the heaviest elements in the "physics of the super h eavy elements" section at the Helmholtz Center for Heavy Ion Research GmbH, Darmstadt, a Nd:YAG pump laser with a repetition rate of 100 Hz is required. The laser must be able to operate at both 532 nm and 355 nm (interchangeable, both included in the package) in order to use dye lasers with emissions in the visible and UV ranges (see sketch in Fig. 1). This requires pulse energies of at least 300 mJ at 532 nm and 200 mJ at 355 nm. In addition, p

It Ref Id - 90416088

Deadline - Aug 21, 2024

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