Atnaujintas knygų su minimaliais defektais pasiūlymas! Naršykite ČIA >>

0 Mėgstami
0Krepšelis

Enhancement Cavities for the Generation of Extreme Ultraviolet and Hard X-Ray Radiation

-22% su kodu: BOOKS
132,12 
Įprasta kaina: 169,38 
-22% su kodu: BOOKS
Kupono kodas: BOOKS
Akcija baigiasi: 2025-03-10
-22% su kodu: BOOKS
132,12 
Įprasta kaina: 169,38 
-22% su kodu: BOOKS
Kupono kodas: BOOKS
Akcija baigiasi: 2025-03-10
-22% su kodu: BOOKS
2025-03-31 132.12 InStock
Nemokamas pristatymas į paštomatus per 11-15 darbo dienų užsakymams nuo 20,00 

Knygos aprašymas

This thesis discusses the power scaling of ultrashort pulses in enhancement cavities, utilized in particular for frequency conversion processes, such as Thomson scattering and high-harmonic generation. Using custom optics for ultrashort-pulse enhancement cavities, it demonstrates for the first time that at the envisaged power levels, the mitigation of thermal effects becomes indispensable even in cavities comprising solely reflective optics. It also studies cavities with large beams, albeit with low misalignment sensitivity, as a way to circumvent intensity-induced mirror damage. Average powers of several hundred kilowatts are demonstrated, which benefit hard x-ray sources based on Thomson scattering. Furthermore, pulses as short as 30 fs were obtained at more than 10 kW of average power and employed for high-harmonic generation with photon energies exceeding 100 eV at 250 MHz repetition rate, paving the way for frequency comb spectroscopy in this spectral region.

Informacija

Autorius: Henning Carstens
Serija: Springer Theses
Leidėjas: Springer Nature Switzerland
Išleidimo metai: 2018
Knygos puslapių skaičius: 108
ISBN-10: 303006770X
ISBN-13: 9783030067700
Formatas: 235 x 155 x 7 mm. Knyga minkštu viršeliu
Kalba: Anglų

Pirkėjų atsiliepimai

Parašykite atsiliepimą apie „Enhancement Cavities for the Generation of Extreme Ultraviolet and Hard X-Ray Radiation“

Būtina įvertinti prekę

Goodreads reviews for „Enhancement Cavities for the Generation of Extreme Ultraviolet and Hard X-Ray Radiation“