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Journal Articles

Development of an apparatus for characterization of cluster-gas targets for laser-driven particle accelerations

Jinno, Satoshi; Fukuda, Yuji; Sakaki, Hironao; Yogo, Akifumi; Kanasaki, Masato; Kondo, Kiminori; Faenov, A. Y.; Skobelev, I. Yu.*; Pikuz, T.; Boldarev, A. S.*; et al.

Progress in Ultrafast Intense Laser Science XI; Springer Series in Chemical Physics, Vol.109, p.215 - 233, 2015/00

Clusters formed in supersonic gas expansion through a three-staged conical nozzle have been verified by measuring the angular distribution of the light scattered from cluster target. The size distirbutions of the clusters are calculated based on the Mie theory. The reliability of the size measurement is verified to be an experimental error of 10% using standard particles. The mean sizes of CO$$_2$$ clusters for the cases of CO$$_2$$/H$$_2$$ and CO$$_2$$/He mixed-gas targets are estimated to be 0.26 $$mu$$m and 0.22 $$mu$$m, respectively. For the CO$$_2$$/H$$_2$$, the cluster density is estimated to be 5.5 $$times 10^8$$ clusters/cm$$^2$$ by measuring the attenuation of the laser beam intensity. Furthermore, total gas density profiles are obtained via the Abel inversion from the phase shift of the light passing through the target using an interferometer. The variation of the cluster mass fraction along the radial direction of the target is almost constant, which is consistent with a Boldarev's model.

Journal Articles

Electron and ion coincidence momentum imaging of multichannel dissociative ionization of ethanol in intense laser fields

Itakura, Ryuji; Hosaka, Koichi*; Yokoyama, Atsushi; Ikuta, Tomoya*; Kannari, Fumihiko*; Yamanouchi, Kaoru*

Progress in Ultrafast Intense Laser Science XI; Springer Series in Chemical Physics, Vol.109, p.23 - 42, 2015/00

We investigate the multichannel dissociative ionization of ethanol in intense laser fields by the photoelectron-photoion coincidence momentum imaging and identify separately the ionization and subsequent electronic excitation in ethanol. From the energy correlation between a photoelectron and a fragment ion, we reveal the amount of the internal energy gained by ethanol cations from the laser field varies depending on the respective ionization and electronic excitation pathways.

Journal Articles

Development of soft X-ray microscopy using Fresnel zone plate for observation of laser-induce surface dynamics

Nishikino, Masaharu; Baba, Motoyoshi*; Suemoto, Toru; Hasegawa, Noboru; Ishino, Masahiko; Kaihori, Takeshi; Kawachi, Tetsuya; Yamagiwa, Mitsuru

X-Ray Lasers 2012; Springer Proceedings in Physics, Vol.147, p.199 - 202, 2014/00

 Times Cited Count:0 Percentile:0(Engineering, Electrical & Electronic)

The dynamical processes of the laser-induced surface modifications such as laser ablation come to attract much attention for the micro processing by the ultra-short laser pulse. It is difficult to observe these phenomena directly, because they are non-repetitive, unrepeatable, and occur very rapidly (pico-second) in a very small (micron) area. In order to observe the detailed laser-ablation process, we have developed the proto-type reflected soft X-ray microscopy using the Fresnel zone plate. The experimental setup and spatial resolution of the X-ray microscopy will be presented.

Journal Articles

Nano-meter size modification of metal surfaces induced by soft X-ray laser single pulse

Ishino, Masahiko; Faenov, A.*; Tanaka, Momoko; Pikuz, T.; Tamotsu, Satoshi*; Hasegawa, Noboru; Nishikino, Masaharu; Starikov, S. V.*; Stegailov, V. V.*; Norman, G.*; et al.

X-Ray Lasers 2012; Springer Proceedings in Physics, Vol.147, p.121 - 124, 2014/00

 Times Cited Count:0 Percentile:0(Engineering, Electrical & Electronic)

Journal Articles

Observation of the laser-induced surface dynamics using the single-shot soft X-ray laser probe

Hasegawa, Noboru; Ochi, Yoshihiro; Kawachi, Tetsuya; Nishikino, Masaharu; Ishino, Masahiko; Imazono, Takashi; Kaihori, Takeshi; Morita, Toshimasa; Sasaki, Akira; Terakawa, Kota*; et al.

X-Ray Lasers 2012; Springer Proceedings in Physics, Vol.147, p.117 - 120, 2014/00

 Times Cited Count:0 Percentile:0(Engineering, Electrical & Electronic)

We have developed the femto-second laser pump and soft X-ray laser probe system in order to observe the dynamical processes of the femto-second laser ablation. By using this system, we succeed to obtain the temporal evolution of the soft X-ray reflectivity from the laser induced Pt surface. The results lead that the rate of decrease in the reflectivity of the probe beam has a non-linear relation with the pump laser fluence.

Journal Articles

Development of silver tape target system for high repetition X-ray laser

Nishikino, Masaharu; Ochi, Yoshihiro; Hasegawa, Noboru; Kawachi, Tetsuya; Oba, Toshiyuki; Kaihori, Takeshi; Nagashima, Keisuke

X-Ray Lasers 2010; Springer Proceedings in Physics, Vol.136, p.93 - 98, 2011/12

The improvement of X-ray laser generation so as to have a high repetition rate will open up the possibility of new applications. In the last decade, progress in reducing the required pump energy for the X-ray lasing and raising the repetition rate has been achieved by new technologies, such as the Transient Collisional Excitation (TCE) scheme and Grazing Incidence Pumping (GRIP). Under this circumstance, the development of continuous pumping to the target system is an important issue for realizing an XRL with the high repetition rate. We have developed a 13.9 nm XRL using a silver tape target4 and demonstrated a highly coherent XRL with an oscillator-amplifier configuration5 using two tape target systems and the TOPAZ laser system6 with a 10-J and a 0.1-Hz repetition rate. The output energy is comparable to the X-ray laser generated with a silver-deposited slab target, and the pointing stability using the new tape target system is better than conventional slab target.

Journal Articles

Application of laser plasma X-ray beam in radiation biology

Nishikino, Masaharu; Sato, Katsutoshi; Hasegawa, Noboru; Ishino, Masahiko; Kawachi, Tetsuya; Imazono, Takashi; Numasaki, Hodaka*; Teshima, Teruki*; Nishimura, Hiroaki*

X-Ray Lasers 2010; Springer Proceedings in Physics, Vol.136, p.301 - 306, 2011/12

Temporal sequences of physical and physicochemical stage of actions in biological systems irradiated with energetic radiation take place with in the order of picoseconds. The short duration of laser produced plasma source could be used as a new source in contrast to conventional X-ray sources in investigating the mechanism of the affect of radiation on biological cells. We have started to develop a focused X-ray beam irradiation system for use in studying radiobiological effects on cells, and demonstrated a preliminary study of radiation effect on culture cells irradiated with laser produced plasma Ka X-rays and the X-ray laser.

Journal Articles

Source development and novel applications of laser-driven plasma X-ray lasers in JAEA

Kawachi, Tetsuya; Hasegawa, Noboru; Nishikino, Masaharu; Ishino, Masahiko; Imazono, Takashi; Oba, Toshiyuki; Kaihori, Takeshi; Kishimoto, Maki; Ochi, Yoshihiro; Tanaka, Momoko; et al.

X-Ray Lasers 2010; Springer Proceedings in Physics, Vol.136, p.15 - 24, 2011/12

This paper reviews recent improvement in the source development of laser-driven X-ray lasers and the applications in the research fields of material science, laser processing, X-ray imaging, and radiation damage in biological cells. In the application for material science, we have firstly observed temporal correlation between the domain structures of ferro-electric substance under the Curie temperature. In the laser processing, new X-ray laser interferometer reveals us the nano-scale surface distortion of substance pumped by a femto-second optical pulse. In the X-ray diffraction image, we have taken several static images of micro-structure of samples: now we are trying to extend the objective to nano-scale dynamics using pump and probe method. In the radiation damage of biological cells, we observed double strand break in DNA using X-ray laser exposure; this results are compared with the case using incoherent several KeV X-ray exposure.

Journal Articles

Development of the X-ray interferometer and the method of spatial and temporal synchronization of XRL and optical pulse

Hasegawa, Noboru; Ochi, Yoshihiro; Kawachi, Tetsuya; Terakawa, Kota*; Tomita, Takuro*; Yamamoto, Minoru; Nishikino, Masaharu; Oba, Toshiyuki; Kaihori, Takeshi; Imazono, Takashi; et al.

X-Ray Lasers 2010; Springer Proceedings in Physics, Vol.136, p.353 - 358, 2011/12

The understanding of the dynamics of the initial process is important for the micro processing and welding by the ultra-short laser pulse. The X-ray laser is suitable for probing this initial process because it has short wavelength (Ni-like Ag, 13.9 nm) and short duration (7 ps). For this investigation, the origin of time of the pumping pulse is quite important. In this study, we used the scintillation plate and the plasma gate technique to realize the spatial and temporal synchronization of the pump and probe pulses. For the spatial alignment, a CsI scintillation plate that was set at the sample position was illuminated by both the X-ray laser pulse, and the fluorescence light were detected by the CCD camera. For the temporal synchronization, we set a thin foil at the sample position. We measured the transmission of the X-ray laser while changing a temporal delay of the pumping laser with respect to the time of X-ray laser pulse to obtain the origin of the irradiation time.

Journal Articles

An STM for molecules and wide-bandgap crystal

Akagi, Hiroshi; Arissian, L.*; Bertrand, J. B.*; Corkum, P. B.*; Gertsvolf, M.*; Pavicic, D.*; Rayner, D. M.*; Smeenk, C.*; Staudte, A.*; Villeneuve, D. M.*; et al.

Laser Physics, 19(8), p.1697 - 1704, 2009/08

 Times Cited Count:4 Percentile:25.47(Optics)

The paper is divided into four sections. In the first, using atomic ionization as the example, we describe how we can make measurements without re-collision. In the second section we show one approach to measuring the tunnelling probability as a function of molecular alignment using a correlation method. The third section concentrates on how small molecules can be aligned with short laser pulses. Once molecules can be aligned, we can also measure the tunnelling rate as a function of alignment by measuring the ionization probability with linearly polarized light. We use Br$$_{2}$$ and N$$_{2}$$ as examples. Finally we complete the circle, returning to solids. A traditional STM is confined to the surface of solids. Laser radiation does not suffer from this limitation in large band gap materials. One might expect that the ionization probability would change as a function of the angle between the light polarization and the crystal axis much as it does for a molecule. We complete our review by demonstrating that tunnelling can be used to identify the symmetry of a crystal - with micron spatial precision - anywhere in the bulk.

Journal Articles

Propagation of the high power laser pulse in multicomponent cluster targets

Echkina, E. Yu.*; Inovenkov, I. N.*; Esirkepov, T. Z.; Fukuda, Yuji; Koga, J. K.; Bulanov, S. V.

Laser Physics, 19(2), p.228 - 230, 2009/02

 Times Cited Count:5 Percentile:29.51(Optics)

Journal Articles

Ion acceleration and stability in the radiation pressure dominated regime

Pegoraro, F.*; Bulanov, S. V.

Laser Physics, 19(2), p.222 - 227, 2009/02

 Times Cited Count:7 Percentile:37.56(Optics)

Journal Articles

Time-resolved fluorescence spectrum of wide-gap semiconductors excited by 13.9 nm X-ray laser

Tanaka, Momoko; Furukawa, Yusuke*; Nakazato, Tomoharu*; Tatsumi, Toshihiro*; Murakami, Hidetoshi*; Shimizu, Toshihiko*; Sarukura, Nobuhiko*; Nishikino, Masaharu; Kawachi, Tetsuya; Kagamitani, Yuji*; et al.

X-Ray Lasers 2008; Springer Proceedings in Physics, Vol.130, p.501 - 505, 2009/00

We measured the time-resolved fluorescence spectra of ZnO and GaN single crystals excited by an X-ray laser operating at 13.9 nm and evaluated their scintillation properties for EUV excitation as compared with UV excitation case. For ZnO, a clear fluorescence peak of excitonic origin was observed at around 380 nm and the decay lifetime of less than 3 ns is found to be almost similar to the UV excitation case. The fluorescence at 380 nm is ideal for scintillator device design in the EUV and further applications. For GaN, the lifetimes are much longer than ZnO and the temporal profile of the EUV-excited fluorescence differs with the UV excitation case. As such, the EUV scintillation properties of ZnO is said to be more favorable than GaN. Finally, it is also demonstrated that an X-ray laser is an excellent tool for spectroscopic characterization of materials intended for next-generation lithography applications.

Journal Articles

New driver laser system for double target X-ray lasers at JAEA

Ochi, Yoshihiro; Hasegawa, Noboru; Kawachi, Tetsuya; Nishikino, Masaharu; Tanaka, Momoko; Kishimoto, Maki; Oba, Toshiyuki

X-Ray Lasers 2008; Springer Proceedings in Physics, Vol.130, p.161 - 166, 2009/00

Journal Articles

Development of soft X-ray fourier transform holography with fresnel zone plate

Nishikino, Masaharu; Yamatani, Hiroshi; Nagashima, Keisuke; Kawachi, Tetsuya

X-Ray Lasers 2008; Springer Proceedings in Physics, Vol.130, p.427 - 432, 2009/00

The focused X-ray beam with a high intensity and a micron-order scale is expected to open various fields, such as the nonlinear phenomena, the nanoscale structuring of semiconductor material, and the X-ray probing of a single biological cell. A submicron soft X-ray beam is generated by a highly coherent soft X-ray laser at 13.9 nm with a Fresnel phase zone plate (FZP). The focused X-ray beam profile is measured using a knife-edge scan method. The submicron X-ray beam can also be used as the X-ray source of the Fourier transform holography. The FZP generates a point reference source and works as a beam splitter. The transmitted 0th order beam illuminates the object directly. A Fourier transform hologram is generated by the interference between the object wave diffracted from the object and the spherical reference wave. The holograms of the wire and the grid pattern are recorded with a CCD camera. The spatial resolution of the hologram will be presented.

Journal Articles

Development of a high-contrast, high-peak power, Ti:sapphire/OPCPA laser system

Kiriyama, Hiromitsu

Laser Physics, 17(4), p.472 - 477, 2007/04

 Times Cited Count:0 Percentile:0.01(Optics)

no abstracts in English

Journal Articles

Intense femto-second laser-driven X-ray source coupled with multiple directional quantum beams for applications

Daido, Hiroyuki; Sagisaka, Akito; Ogura, Koichi; Orimo, Satoshi; Nishiuchi, Mamiko; Yogo, Akifumi; Mori, Michiaki; Li, Z.*; Kiriyama, Hiromitsu; Kanazawa, Shuhei; et al.

X-Ray Lasers 2006; Springer Proceedings in Physics, Vol.115, p.595 - 605, 2007/00

At present, using ultra-short high intensity lasers at APRC, JAEA Kansai photon research institute, we are developing laser driven multiple quantum beams such as protons, X-rays, electrons and THz waves. These beams are perfectly synchronized with each other. The pulse duration of each beam is lass than a pico-second. They have sharp directionality with high brightness. If we properly combined these, we have new pump-probe techniques for various applications.

Journal Articles

Development of beam-pointing stabilizer on a 10-TW Ti:Al${tiny 2}$O${tiny 3}$ laser system JLITE-X for laser-excited ion accelerator research

Mori, Michiaki; Pirozhkov, A.; Nishiuchi, Mamiko; Ogura, Koichi; Sagisaka, Akito; Hayashi, Yukio; Orimo, Satoshi; Fukumi, Atsushi*; Li, Z.*; Kado, Masataka; et al.

Laser Physics, 16(7), p.1092 - 1096, 2006/07

 Times Cited Count:36 Percentile:80.17(Optics)

no abstracts in English

Journal Articles

Development of high-repetition-rate LD pumped Nd:YAG laser and its application

Kiriyama, Hiromitsu; Yamakawa, Koichi

Laser Physics, 16(4), p.666 - 672, 2006/04

 Times Cited Count:4 Percentile:23.42(Optics)

no abstracts in English

Journal Articles

Simulation of electron bunch generation by an ultrashort-pulse high-intensity laser-driven wakefield

Yamagiwa, Mitsuru; Bulanov, S. V.*; Esirkepov, T. Z.*; Koga, J. K.; Kando, Masaki; Ueshima, Yutaka; Saito, Kanji; Wakabayashi, Daisuke*

Laser Physics, 16(2), p.252 - 258, 2006/02

 Times Cited Count:2 Percentile:13.03(Optics)

no abstracts in English

22 (Records 1-20 displayed on this page)