Combination of crystal growth with optical floating zone and evaluation of Nd3+:LaAlO3 crystals with the dynamic nuclear polarization of 139La and 27Al

Author:

Ishizaki Kohei1ORCID,Ide Ikuo1,Fujita Masaki2,Hotta Hiroki1,Ito Yuki1ORCID,Iinuma Masataka3ORCID,Ikeda Yoichi2ORCID,Iwata Takahiro4ORCID,Kitaguchi Masaaki5ORCID,Kohri Hideki16ORCID,Matsushita Taku1ORCID,Miura Daisuke4,Miyachi Yoshiyuki4ORCID,Shimizu Hirohiko M.1ORCID,Yosoi Masaru6ORCID

Affiliation:

1. Nagoya University 1 , Furocho, Chikusa, Nagoya 464-8602, Japan

2. Institute for Materials Research, Tohoku University 2 , Sendai 980-8577, Japan

3. Hiroshima University 3 , Kagamiyama, Higashi-hiroshima 739-8527, Japan

4. Yamagata University 4 , Kojirakawa, Yamagata 990-8560, Japan

5. KMI, Nagoya University 5 , Furocho, Chikusa, Nagoya 464-8602, Japan

6. Research Center for Nuclear Physics, Osaka University 6 , Ibaraki, Osaka 567-0047, Japan

Abstract

Producing a polarized lanthanum (La) target with high polarization and long relaxation time is crucial for realizing time-reversal violation experiments using polarized neutron beams. We use a LaAlO3 crystal doped with a small amount of Nd3+ ions for the polarized lanthanum target. Optimizing the amount of Nd3+ ions is considerably important because the achievable polarization and relaxation time strongly depend on this amount. We established a fundamental method to grow single crystals of Nd3+:LaAlO3 using an optical floating zone method that employs halogen lamps and evaluated the crystals with the dynamic nuclear polarization (DNP) method for polarizing nuclear spins. Two crystal samples were grown by ourselves and evaluated with the DNP at 1.3 K and 2.3 T for the first time, except for the target materials of protons. The enhancement of nuclear magnetic resonance signals for 139La and 27Al was successfully observed, and the enhancement factors were eventually 3.5 ± 0.3 and 13 ± 3 for the samples with Nd3+ ions of 0.05 and 0.01 mol. %, respectively. These enhancement factors correspond to absolute vector polarizations of 0.27% ± 0.02% (Nd3+ 0.05 mol. %) and 1.4% ± 0.3% (Nd3+ 0.01 mol. %). Although the obtained polarizations are still low, they are acceptable as a first step. The combination scheme of the crystal growth and the evaluation of the crystals is found to be effectively applicable for optimizing the amount of Nd3+ ions for improving the performance of the polarized target.

Funder

RCNP, Osaka University

GIMRT, IMR, Tohoku University

Publisher

AIP Publishing

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