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Ueyama, Daichi*; Semboshi, Satoshi*; Saito, Yuichi; Ishikawa, Norito; Nishida, Kenji*; Soneda, Naoki*; Hori, Fuminobu*; Iwase, Akihiro*
Japanese Journal of Applied Physics, 53(5S1), p.05FC04_1 - 05FC04_5, 2014/05
Times Cited Count:9 Percentile:36.57(Physics, Applied)In our previous research, it was found that the hardness of Cu-Ti alloy increased by energetic heavy ion irradiation at room temperature. In the conference, we will show the result of electron beam irradiation on the hardness of Cu-Ti alloys. We used CuTi sheets with the dimension of 10 10
0.250 mm
. The specimens were irradiated at 473 K and 523 K with 2 MeV electrons. For comparison, we thermally aged some specimens at the same temperatures as that for the irradiation. The electron fluence of 8.0
10
/cm
corresponds to the processing time of about 10 h. As a result, the thermal aging for 10 h increases the hardness by 5 or less, which is much smaller than that by the irradiation (about 20). The hardness of the reverse side of irradiated surface is almost the same as that of the irradiated surface. The present result implies that energetic electron irradiation can be a useful tool for controlling the hardness of the "bulk" Cu-Ti alloy.
Koide, Tetsuya*; Sato, Takahiro; Koka, Masashi; Saito, Yuichi; Kamiya, Tomihiro; Okochi, Takuo*; Kotsugi, Masato*; Kinoshita, Toyohiko*; Nakamura, Tetsuya*; Iwase, Akihiro*; et al.
Japanese Journal of Applied Physics, 53(5S1), p.05FC06_1 - 05FC06_4, 2014/05
Times Cited Count:13 Percentile:48.05(Physics, Applied)We previously reported that the magnetic state of FeRh can be controlled by irradiation with ion beams. In this paper, we evaluate possibility of magnetic patterning on FeRh thin films using energetic light ion microbeam irradiation with various shapes and dimensions. Proton microbeam irradiation with 2 MeV was performed at JAEA-Takasaki to produce micron-sized magnetic patterns. XMCD-PEEM observation was performed at SPring8 to confirm the synthesized magnetic patterns. As a result, the XMCD-PEEM images of the various micrometer sized patters in FeRh film were observed using 2 MeV H ion beam. The observed bright regions are considered to have ferromagnetic spin orders, in contrast that the gray areas have anti-ferromagnetic spin order. Since the brightness of the PEEM images is strongly correlated with the magnetization of the samples, we reveal that the magnetic state in local regions of the FeRh thin films can be controlled by changing the ion fluences.
Onoda, Shinobu; Oshima, Takeshi; Yamamoto, Takashi*; Teraji, Tokuyuki*; Jelezko, F.*; Isoya, Junichi*
no journal, ,
no abstracts in English
Yamamoto, Takashi*; Muller, C.*; McGuinness, L.*; Teraji, Tokuyuki*; Naydenov, B.*; Onoda, Shinobu; Oshima, Takeshi; Koizumi, Satoshi*; Wrachtrup, J.*; Isoya, Junichi*; et al.
no journal, ,
no abstracts in English
Takahashi, Masamitsu; Kozu, Miwa*; Hu, W.*
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Tamura, Shuto*; Komatsubara, Akira*; Teraji, Tokuyuki*; Onoda, Shinobu; McGuinness, L.*; Jelezko, F.*; Rogers, L.*; Oshima, Takeshi; Isoya, Junichi*; Shinada, Takahiro*; et al.
no journal, ,
no abstracts in English
Tang, J.*; Nishimoto, Kiwamu*; Ogawa, Shuichi*; Yoshigoe, Akitaka; Ishizuka, Shinji*; Watanabe, Daiki*; Teraoka, Yuden; Takakuwa, Yuji*
no journal, ,
Yamanoi, Ryoko*; Sasaki, Shuichi*; Osawa, Eiji*; Naramoto, Hiroshi*; Sakai, Seiji; Onoda, Shinobu; Oshima, Takeshi
no journal, ,
no abstracts in English
Kubota, Masato; Takeda, Masayasu; Okamoto, Jun*; Nakao, Hironori*; Murakami, Yoichi*; Yamada, Hiroyuki*; Sawa, Akihito*
no journal, ,