Title :
Intense Lyman-α light source for generation of ultra-slow Muon
Author :
Oishi, Yasuyuki ; Okamura, Kotaro ; Miyazaki, Koji ; Saito, Nobuo ; Iwasaki, Makoto ; Wada, Sho
Author_Institution :
RIKEN, Wako, Japan
Abstract :
Summary form only given. High-power ultra-slow Muon is open the way to the realization of ultrahigh-precision measurement of anomalous magnetic moment (g-2) [1] and ultra-slow Muon microscope [2]. The generation of such ultra-slow Muon require intense coherent Lyman-α (Ly-α) light source. The Ly-α light (122.09 nm) can generate by methods of two-photon resonance (TPR) four-wave mixing technique in a Kr gas medium [3]. The method have advantages in efficient TPR excitation and the TPR light (212.55 nm) can generate by the fifth harmonic of a conventional all-solid-state laser configuration. However, the fundamental wavelength of TPR (1062.78 nm) is slightly shifted from generally used Nd:YAG emission center (1064 nm) and its gain is poor. Where Nd doped Y3Ga2Al3O12 (YGAG) and Y3Sc2Al3O12 (YSAG) crystals have been reported to overcome such problem [4, 5]. In this paper, we report a development of spectrally specialized all-solid-state laser.
Keywords :
aluminium compounds; gallium compounds; light coherence; light sources; multiwave mixing; muons; neodymium; quantum optics; scandium compounds; solid lasers; two-photon processes; yttrium compounds; TPR light wavelength shifting; Y3Ga2Al3O12:Nd; Y3Sc2Al3O12:Nd; YAG:Nd; all-solid-state laser configuration; anomalous magnetic moment; four-wave mixing technique; high-power ultraslow muon generation; intense coherent Lyman-α light source; krypton gas medium; neodymiium:YAG emission center; two-photon resonance methods; ultrahigh-precision measurement; ultralow Muon microscope; wavelength 1062.78 nm; Crystals; Fiber lasers; Gas lasers; Light sources; Mesons; Pump lasers; Quantum cascade lasers;
Conference_Titel :
Lasers and Electro-Optics Europe (CLEO EUROPE/IQEC), 2013 Conference on and International Quantum Electronics Conference
Conference_Location :
Munich
Print_ISBN :
978-1-4799-0593-5
DOI :
10.1109/CLEOE-IQEC.2013.6800889