S. Matsusaka, M. Naotomo, H. Hidai, A. Chiba, N. Morita, and T. Itoi, “Formation of a buried silver nanowire network in borosilicate glass by solid-state ion exchange assisted with forward and reverse electric fields,” Appl. Phys. Lett. 105(10), 103102 (2014).
[Crossref]
S. Matsusaka, T. Kobayakawa, H. Hidai, and N. Morita, “Laser micro-machinability of borosilicate glass surface-modified by electric field-assisted ion-exchange method,” J. Phys. Conf. Ser. 379, 012035 (2012).
[Crossref]
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Structural changes in silica glass by continuous-wave laser backside irradiation,” J. Am. Ceram. Soc. 93, 1597–1601 (2010).
H. Hidai, T. Yamazaki, S. Itoh, K. Hiromatsu, and H. Tokura, “Metal particle manipulation by laser irradiation in borosilicate glass,” Opt. Express 18(19), 20313–20320 (2010).
[Crossref]
[PubMed]
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Glass modification by continuous-wave laser backside irradiation (CW-LBI),” Appl. Phys., A Mater. Sci. Process. 96(4), 869–872 (2009).
[Crossref]
A. A. Borisov, “Experimental study of the effect of SiO2 on Ni solubility in silicate melts,” Petrology 14(6), 530–539 (2006).
[Crossref]
H. Amekura, N. Umeda, Y. Takeda, J. Lu, K. Kono, and N. Kishimoto, “Formation processes of nickel oxide nanoparticles in SiO2 by metal-ion implantation combined with thermal oxidation,” Nuclear Instrum. Methods B 230(1-4), 193–197 (2005).
[Crossref]
H. Amekura, H. Kitazawa, and N. Kishimoto, “Non-magnetic to magnetic and non-metal to metal transitions in nickel nanoparticles in SiO2 under heat treatment,” Nuclear Instrum. Methods B 219–220, 825–829 (2004).
[Crossref]
H. Amekura, H. Kitazawa, N. Umeda, Y. Takeda, and N. Kishimoto, “Nickel nanoparticles in silica glass fabricated by 60 keV negative-ion implantation,” Nuclear Instrum. Methods B 222(1-2), 114–122 (2004).
[Crossref]
J. Qiu, X. Jiang, C. Zhu, H. Inouye, J. Si, and K. Hirao, “Optical properties of structurally modified glasses doped with gold ions,” Opt. Lett. 29(4), 370–372 (2004).
[Crossref]
[PubMed]
X. W. Jiang, J. R. Qiu, H. D. Zeng, C. S. Zhu, and K. Hirao, “Laser-controlled dissolution of gold nanoparticles in glass,” Chem. Phys. Lett. 391(1-3), 91–94 (2004).
[Crossref]
J. T. Mayer, R. F. Lin, and E. Garfunkel, “Surface and bulk diffusion of adsorbed nickel on ultrathin thermally grown silicon dioxide,” Surf. Sci. 265(1-3), 102–110 (1992).
[Crossref]
R. V. Ramaswamy and R. Srivastava, “Ion-exchanged glass waveguides: a review,” J. Lightwave Technol. 6(6), 984–1000 (1988).
[Crossref]
T. Haranoh, H. Ishikawa, N. Shinkai, and M. Mizuhashi, “Crack evolution in Vickers indentation for soda-lime-silica glass,” J. Mater. Sci. 17(5), 1493–1500 (1982).
[Crossref]
R. N. Ghoshtagore, “Diffusion of nickel in amorphous silicon dioxide and silicon nitride films,” J. Appl. Phys. 40(11), 4374–4376 (1969).
[Crossref]
H. Amekura, N. Umeda, Y. Takeda, J. Lu, K. Kono, and N. Kishimoto, “Formation processes of nickel oxide nanoparticles in SiO2 by metal-ion implantation combined with thermal oxidation,” Nuclear Instrum. Methods B 230(1-4), 193–197 (2005).
[Crossref]
H. Amekura, H. Kitazawa, and N. Kishimoto, “Non-magnetic to magnetic and non-metal to metal transitions in nickel nanoparticles in SiO2 under heat treatment,” Nuclear Instrum. Methods B 219–220, 825–829 (2004).
[Crossref]
H. Amekura, H. Kitazawa, N. Umeda, Y. Takeda, and N. Kishimoto, “Nickel nanoparticles in silica glass fabricated by 60 keV negative-ion implantation,” Nuclear Instrum. Methods B 222(1-2), 114–122 (2004).
[Crossref]
A. A. Borisov, “Experimental study of the effect of SiO2 on Ni solubility in silicate melts,” Petrology 14(6), 530–539 (2006).
[Crossref]
S. Matsusaka, M. Naotomo, H. Hidai, A. Chiba, N. Morita, and T. Itoi, “Formation of a buried silver nanowire network in borosilicate glass by solid-state ion exchange assisted with forward and reverse electric fields,” Appl. Phys. Lett. 105(10), 103102 (2014).
[Crossref]
H. Hidai, M. Matsushita, S. Matsusaka, A. Chiba, and N. Morita, “Moving force of metal particle migration induced by laser irradiation in borosilicate glass,” Opt. Express 21(16), 18955–18962 (2013).
[Crossref]
[PubMed]
J. T. Mayer, R. F. Lin, and E. Garfunkel, “Surface and bulk diffusion of adsorbed nickel on ultrathin thermally grown silicon dioxide,” Surf. Sci. 265(1-3), 102–110 (1992).
[Crossref]
R. N. Ghoshtagore, “Diffusion of nickel in amorphous silicon dioxide and silicon nitride films,” J. Appl. Phys. 40(11), 4374–4376 (1969).
[Crossref]
T. Haranoh, H. Ishikawa, N. Shinkai, and M. Mizuhashi, “Crack evolution in Vickers indentation for soda-lime-silica glass,” J. Mater. Sci. 17(5), 1493–1500 (1982).
[Crossref]
S. Matsusaka, M. Naotomo, H. Hidai, A. Chiba, N. Morita, and T. Itoi, “Formation of a buried silver nanowire network in borosilicate glass by solid-state ion exchange assisted with forward and reverse electric fields,” Appl. Phys. Lett. 105(10), 103102 (2014).
[Crossref]
H. Hidai, M. Matsushita, S. Matsusaka, A. Chiba, and N. Morita, “Moving force of metal particle migration induced by laser irradiation in borosilicate glass,” Opt. Express 21(16), 18955–18962 (2013).
[Crossref]
[PubMed]
S. Matsusaka, T. Kobayakawa, H. Hidai, and N. Morita, “Laser micro-machinability of borosilicate glass surface-modified by electric field-assisted ion-exchange method,” J. Phys. Conf. Ser. 379, 012035 (2012).
[Crossref]
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Structural changes in silica glass by continuous-wave laser backside irradiation,” J. Am. Ceram. Soc. 93, 1597–1601 (2010).
H. Hidai, T. Yamazaki, S. Itoh, K. Hiromatsu, and H. Tokura, “Metal particle manipulation by laser irradiation in borosilicate glass,” Opt. Express 18(19), 20313–20320 (2010).
[Crossref]
[PubMed]
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Glass modification by continuous-wave laser backside irradiation (CW-LBI),” Appl. Phys., A Mater. Sci. Process. 96(4), 869–872 (2009).
[Crossref]
X. W. Jiang, J. R. Qiu, H. D. Zeng, C. S. Zhu, and K. Hirao, “Laser-controlled dissolution of gold nanoparticles in glass,” Chem. Phys. Lett. 391(1-3), 91–94 (2004).
[Crossref]
J. Qiu, X. Jiang, C. Zhu, H. Inouye, J. Si, and K. Hirao, “Optical properties of structurally modified glasses doped with gold ions,” Opt. Lett. 29(4), 370–372 (2004).
[Crossref]
[PubMed]
J. Qiu, K. Kojima, K. Miura, T. Mitsuyu, and K. Hirao, “Infrared femtosecond laser pulse induced permanent reduction of Eu3+ to Eu2+ in a fluorozirconate glass,” Opt. Lett. 24(11), 786–788 (1999).
[Crossref]
[PubMed]
H. Hidai, T. Yamazaki, S. Itoh, K. Hiromatsu, and H. Tokura, “Metal particle manipulation by laser irradiation in borosilicate glass,” Opt. Express 18(19), 20313–20320 (2010).
[Crossref]
[PubMed]
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Structural changes in silica glass by continuous-wave laser backside irradiation,” J. Am. Ceram. Soc. 93, 1597–1601 (2010).
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Glass modification by continuous-wave laser backside irradiation (CW-LBI),” Appl. Phys., A Mater. Sci. Process. 96(4), 869–872 (2009).
[Crossref]
T. Haranoh, H. Ishikawa, N. Shinkai, and M. Mizuhashi, “Crack evolution in Vickers indentation for soda-lime-silica glass,” J. Mater. Sci. 17(5), 1493–1500 (1982).
[Crossref]
S. Matsusaka, M. Naotomo, H. Hidai, A. Chiba, N. Morita, and T. Itoi, “Formation of a buried silver nanowire network in borosilicate glass by solid-state ion exchange assisted with forward and reverse electric fields,” Appl. Phys. Lett. 105(10), 103102 (2014).
[Crossref]
X. W. Jiang, J. R. Qiu, H. D. Zeng, C. S. Zhu, and K. Hirao, “Laser-controlled dissolution of gold nanoparticles in glass,” Chem. Phys. Lett. 391(1-3), 91–94 (2004).
[Crossref]
H. Amekura, N. Umeda, Y. Takeda, J. Lu, K. Kono, and N. Kishimoto, “Formation processes of nickel oxide nanoparticles in SiO2 by metal-ion implantation combined with thermal oxidation,” Nuclear Instrum. Methods B 230(1-4), 193–197 (2005).
[Crossref]
H. Amekura, H. Kitazawa, and N. Kishimoto, “Non-magnetic to magnetic and non-metal to metal transitions in nickel nanoparticles in SiO2 under heat treatment,” Nuclear Instrum. Methods B 219–220, 825–829 (2004).
[Crossref]
H. Amekura, H. Kitazawa, N. Umeda, Y. Takeda, and N. Kishimoto, “Nickel nanoparticles in silica glass fabricated by 60 keV negative-ion implantation,” Nuclear Instrum. Methods B 222(1-2), 114–122 (2004).
[Crossref]
H. Amekura, H. Kitazawa, N. Umeda, Y. Takeda, and N. Kishimoto, “Nickel nanoparticles in silica glass fabricated by 60 keV negative-ion implantation,” Nuclear Instrum. Methods B 222(1-2), 114–122 (2004).
[Crossref]
H. Amekura, H. Kitazawa, and N. Kishimoto, “Non-magnetic to magnetic and non-metal to metal transitions in nickel nanoparticles in SiO2 under heat treatment,” Nuclear Instrum. Methods B 219–220, 825–829 (2004).
[Crossref]
S. Matsusaka, T. Kobayakawa, H. Hidai, and N. Morita, “Laser micro-machinability of borosilicate glass surface-modified by electric field-assisted ion-exchange method,” J. Phys. Conf. Ser. 379, 012035 (2012).
[Crossref]
H. Amekura, N. Umeda, Y. Takeda, J. Lu, K. Kono, and N. Kishimoto, “Formation processes of nickel oxide nanoparticles in SiO2 by metal-ion implantation combined with thermal oxidation,” Nuclear Instrum. Methods B 230(1-4), 193–197 (2005).
[Crossref]
J. T. Mayer, R. F. Lin, and E. Garfunkel, “Surface and bulk diffusion of adsorbed nickel on ultrathin thermally grown silicon dioxide,” Surf. Sci. 265(1-3), 102–110 (1992).
[Crossref]
H. Amekura, N. Umeda, Y. Takeda, J. Lu, K. Kono, and N. Kishimoto, “Formation processes of nickel oxide nanoparticles in SiO2 by metal-ion implantation combined with thermal oxidation,” Nuclear Instrum. Methods B 230(1-4), 193–197 (2005).
[Crossref]
S. Matsusaka, M. Naotomo, H. Hidai, A. Chiba, N. Morita, and T. Itoi, “Formation of a buried silver nanowire network in borosilicate glass by solid-state ion exchange assisted with forward and reverse electric fields,” Appl. Phys. Lett. 105(10), 103102 (2014).
[Crossref]
H. Hidai, M. Matsushita, S. Matsusaka, A. Chiba, and N. Morita, “Moving force of metal particle migration induced by laser irradiation in borosilicate glass,” Opt. Express 21(16), 18955–18962 (2013).
[Crossref]
[PubMed]
S. Matsusaka, T. Kobayakawa, H. Hidai, and N. Morita, “Laser micro-machinability of borosilicate glass surface-modified by electric field-assisted ion-exchange method,” J. Phys. Conf. Ser. 379, 012035 (2012).
[Crossref]
J. T. Mayer, R. F. Lin, and E. Garfunkel, “Surface and bulk diffusion of adsorbed nickel on ultrathin thermally grown silicon dioxide,” Surf. Sci. 265(1-3), 102–110 (1992).
[Crossref]
T. Haranoh, H. Ishikawa, N. Shinkai, and M. Mizuhashi, “Crack evolution in Vickers indentation for soda-lime-silica glass,” J. Mater. Sci. 17(5), 1493–1500 (1982).
[Crossref]
S. Matsusaka, M. Naotomo, H. Hidai, A. Chiba, N. Morita, and T. Itoi, “Formation of a buried silver nanowire network in borosilicate glass by solid-state ion exchange assisted with forward and reverse electric fields,” Appl. Phys. Lett. 105(10), 103102 (2014).
[Crossref]
H. Hidai, M. Matsushita, S. Matsusaka, A. Chiba, and N. Morita, “Moving force of metal particle migration induced by laser irradiation in borosilicate glass,” Opt. Express 21(16), 18955–18962 (2013).
[Crossref]
[PubMed]
S. Matsusaka, T. Kobayakawa, H. Hidai, and N. Morita, “Laser micro-machinability of borosilicate glass surface-modified by electric field-assisted ion-exchange method,” J. Phys. Conf. Ser. 379, 012035 (2012).
[Crossref]
S. Matsusaka, M. Naotomo, H. Hidai, A. Chiba, N. Morita, and T. Itoi, “Formation of a buried silver nanowire network in borosilicate glass by solid-state ion exchange assisted with forward and reverse electric fields,” Appl. Phys. Lett. 105(10), 103102 (2014).
[Crossref]
J. Qiu, X. Jiang, C. Zhu, H. Inouye, J. Si, and K. Hirao, “Optical properties of structurally modified glasses doped with gold ions,” Opt. Lett. 29(4), 370–372 (2004).
[Crossref]
[PubMed]
J. Qiu, K. Kojima, K. Miura, T. Mitsuyu, and K. Hirao, “Infrared femtosecond laser pulse induced permanent reduction of Eu3+ to Eu2+ in a fluorozirconate glass,” Opt. Lett. 24(11), 786–788 (1999).
[Crossref]
[PubMed]
X. W. Jiang, J. R. Qiu, H. D. Zeng, C. S. Zhu, and K. Hirao, “Laser-controlled dissolution of gold nanoparticles in glass,” Chem. Phys. Lett. 391(1-3), 91–94 (2004).
[Crossref]
R. V. Ramaswamy and R. Srivastava, “Ion-exchanged glass waveguides: a review,” J. Lightwave Technol. 6(6), 984–1000 (1988).
[Crossref]
T. Haranoh, H. Ishikawa, N. Shinkai, and M. Mizuhashi, “Crack evolution in Vickers indentation for soda-lime-silica glass,” J. Mater. Sci. 17(5), 1493–1500 (1982).
[Crossref]
R. V. Ramaswamy and R. Srivastava, “Ion-exchanged glass waveguides: a review,” J. Lightwave Technol. 6(6), 984–1000 (1988).
[Crossref]
H. Amekura, N. Umeda, Y. Takeda, J. Lu, K. Kono, and N. Kishimoto, “Formation processes of nickel oxide nanoparticles in SiO2 by metal-ion implantation combined with thermal oxidation,” Nuclear Instrum. Methods B 230(1-4), 193–197 (2005).
[Crossref]
H. Amekura, H. Kitazawa, N. Umeda, Y. Takeda, and N. Kishimoto, “Nickel nanoparticles in silica glass fabricated by 60 keV negative-ion implantation,” Nuclear Instrum. Methods B 222(1-2), 114–122 (2004).
[Crossref]
H. Hidai, T. Yamazaki, S. Itoh, K. Hiromatsu, and H. Tokura, “Metal particle manipulation by laser irradiation in borosilicate glass,” Opt. Express 18(19), 20313–20320 (2010).
[Crossref]
[PubMed]
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Structural changes in silica glass by continuous-wave laser backside irradiation,” J. Am. Ceram. Soc. 93, 1597–1601 (2010).
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Glass modification by continuous-wave laser backside irradiation (CW-LBI),” Appl. Phys., A Mater. Sci. Process. 96(4), 869–872 (2009).
[Crossref]
H. Amekura, N. Umeda, Y. Takeda, J. Lu, K. Kono, and N. Kishimoto, “Formation processes of nickel oxide nanoparticles in SiO2 by metal-ion implantation combined with thermal oxidation,” Nuclear Instrum. Methods B 230(1-4), 193–197 (2005).
[Crossref]
H. Amekura, H. Kitazawa, N. Umeda, Y. Takeda, and N. Kishimoto, “Nickel nanoparticles in silica glass fabricated by 60 keV negative-ion implantation,” Nuclear Instrum. Methods B 222(1-2), 114–122 (2004).
[Crossref]
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Structural changes in silica glass by continuous-wave laser backside irradiation,” J. Am. Ceram. Soc. 93, 1597–1601 (2010).
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Glass modification by continuous-wave laser backside irradiation (CW-LBI),” Appl. Phys., A Mater. Sci. Process. 96(4), 869–872 (2009).
[Crossref]
X. W. Jiang, J. R. Qiu, H. D. Zeng, C. S. Zhu, and K. Hirao, “Laser-controlled dissolution of gold nanoparticles in glass,” Chem. Phys. Lett. 391(1-3), 91–94 (2004).
[Crossref]
X. W. Jiang, J. R. Qiu, H. D. Zeng, C. S. Zhu, and K. Hirao, “Laser-controlled dissolution of gold nanoparticles in glass,” Chem. Phys. Lett. 391(1-3), 91–94 (2004).
[Crossref]
S. Matsusaka, M. Naotomo, H. Hidai, A. Chiba, N. Morita, and T. Itoi, “Formation of a buried silver nanowire network in borosilicate glass by solid-state ion exchange assisted with forward and reverse electric fields,” Appl. Phys. Lett. 105(10), 103102 (2014).
[Crossref]
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Glass modification by continuous-wave laser backside irradiation (CW-LBI),” Appl. Phys., A Mater. Sci. Process. 96(4), 869–872 (2009).
[Crossref]
X. W. Jiang, J. R. Qiu, H. D. Zeng, C. S. Zhu, and K. Hirao, “Laser-controlled dissolution of gold nanoparticles in glass,” Chem. Phys. Lett. 391(1-3), 91–94 (2004).
[Crossref]
H. Hidai, M. Yoshioka, K. Hiromatsu, and H. Tokura, “Structural changes in silica glass by continuous-wave laser backside irradiation,” J. Am. Ceram. Soc. 93, 1597–1601 (2010).
R. N. Ghoshtagore, “Diffusion of nickel in amorphous silicon dioxide and silicon nitride films,” J. Appl. Phys. 40(11), 4374–4376 (1969).
[Crossref]
R. V. Ramaswamy and R. Srivastava, “Ion-exchanged glass waveguides: a review,” J. Lightwave Technol. 6(6), 984–1000 (1988).
[Crossref]
T. Haranoh, H. Ishikawa, N. Shinkai, and M. Mizuhashi, “Crack evolution in Vickers indentation for soda-lime-silica glass,” J. Mater. Sci. 17(5), 1493–1500 (1982).
[Crossref]
S. Matsusaka, T. Kobayakawa, H. Hidai, and N. Morita, “Laser micro-machinability of borosilicate glass surface-modified by electric field-assisted ion-exchange method,” J. Phys. Conf. Ser. 379, 012035 (2012).
[Crossref]
H. Amekura, N. Umeda, Y. Takeda, J. Lu, K. Kono, and N. Kishimoto, “Formation processes of nickel oxide nanoparticles in SiO2 by metal-ion implantation combined with thermal oxidation,” Nuclear Instrum. Methods B 230(1-4), 193–197 (2005).
[Crossref]
H. Amekura, H. Kitazawa, and N. Kishimoto, “Non-magnetic to magnetic and non-metal to metal transitions in nickel nanoparticles in SiO2 under heat treatment,” Nuclear Instrum. Methods B 219–220, 825–829 (2004).
[Crossref]
H. Amekura, H. Kitazawa, N. Umeda, Y. Takeda, and N. Kishimoto, “Nickel nanoparticles in silica glass fabricated by 60 keV negative-ion implantation,” Nuclear Instrum. Methods B 222(1-2), 114–122 (2004).
[Crossref]
H. Hidai, T. Yamazaki, S. Itoh, K. Hiromatsu, and H. Tokura, “Metal particle manipulation by laser irradiation in borosilicate glass,” Opt. Express 18(19), 20313–20320 (2010).
[Crossref]
[PubMed]
H. Hidai, M. Matsushita, S. Matsusaka, A. Chiba, and N. Morita, “Moving force of metal particle migration induced by laser irradiation in borosilicate glass,” Opt. Express 21(16), 18955–18962 (2013).
[Crossref]
[PubMed]
J. Qiu, K. Kojima, K. Miura, T. Mitsuyu, and K. Hirao, “Infrared femtosecond laser pulse induced permanent reduction of Eu3+ to Eu2+ in a fluorozirconate glass,” Opt. Lett. 24(11), 786–788 (1999).
[Crossref]
[PubMed]
J. Qiu, X. Jiang, C. Zhu, H. Inouye, J. Si, and K. Hirao, “Optical properties of structurally modified glasses doped with gold ions,” Opt. Lett. 29(4), 370–372 (2004).
[Crossref]
[PubMed]
A. A. Borisov, “Experimental study of the effect of SiO2 on Ni solubility in silicate melts,” Petrology 14(6), 530–539 (2006).
[Crossref]
J. T. Mayer, R. F. Lin, and E. Garfunkel, “Surface and bulk diffusion of adsorbed nickel on ultrathin thermally grown silicon dioxide,” Surf. Sci. 265(1-3), 102–110 (1992).
[Crossref]
C. Louis and O. Pluchery, Gold Nanoparticles for Physics, Chemistry and Biology (Imperial College Press, 2012).