publication . Doctoral thesis . 2016

Génération d'harmoniques et de faisceaux d'électrons sur miroirs plasmas pilotés par laser.

Bocoum, Maïmouna;
Open Access English
  • Published: 24 Jun 2016
  • Publisher: HAL CCSD
  • Country: France
Abstract
The experimental work presented in this manuscript focuses on the non-linear response of plasma mirrors when driven by a sub-relativistic (~10^18 W/cm^2) ultra-short (~30fs) laser pulse. In particular, we studied the generation of attosecond pulses (1as=10^(-18) s) and electron beams from plasma mirror generated in controlled pump-probe experiment. One first important result exposed in this manuscript is the experimental observation of the anticorrelated emission behavior between high-order harmonics and electron beams with respect to plasma scale length. The second important result is the presentation of the « spatial domain interferometry » (SDI) diagnostic, d...
Subjects
free text keywords: Relativity, Attosecond, Plasma mirrors, Attosecondes, Miroir plasma, Relativité, [PHYS.PHYS.PHYS-PLASM-PH]Physics [physics]/Physics [physics]/Plasma Physics [physics.plasm-ph]
Funded by
EC| FEMTOELEC
Project
FEMTOELEC
Innovative Femtosecond laser-plasma based electron source for studying ultrafast structural dynamics
  • Funder: European Commission (EC)
  • Project Code: 306708
  • Funding stream: FP7 | SP2 | ERC
,
EC| LASERLAB-EUROPE
Project
LASERLAB-EUROPE
The Integrated Initiative of European Laser Research Infrastructures III
  • Funder: European Commission (EC)
  • Project Code: 284464
  • Funding stream: FP7 | SP4 | INFRA
,
RCUK| Attosecond Electron Dynamics in Molecular and Condensed Phase Systems
Project
  • Funder: Research Council UK (RCUK)
  • Project Code: EP/I032517/1
  • Funding stream: EPSRC
,
RCUK| Next Generation Attosecond Technology (Translation Grant)
Project
  • Funder: Research Council UK (RCUK)
  • Project Code: EP/F034601/1
  • Funding stream: EPSRC
40 references, page 1 of 3

44. Bourdier, A. Oblique incidence of a strong electromagnetic wave on a cold inhomogeneous electron plasma. Relativistic e ects. Phys. Fluids 26, 1804 1807 (1983).

45. Cicchitelli, L., Hora, H. & Postle, R. Longitudinal field components for laser beams in vacuum. Phys. Rev. A 41, 3727 3732 (1990). *Corresponding author. maimouna.bocoum@ensta‑paristech.fr [OpenAIRE]

[1] N. Burnett, H. Baldis, M. Richardson, and G. Enright, Appl. Phys. Lett. 31, 172 (1977).

[2] R. L. Carman, C. K. Rhodes, and R. F. Benjamin, Phys. Rev. A 24, 2649 (1981).

[3] D. von der Linde, T. Engers, G. Jenke, P. Agostini, G. Grillon, E. Nibbering, A. Mysyrowicz, and A. Antonetti, Phys. Rev. A 52, R25 (1995). [OpenAIRE]

[4] A. Tarasevitch, A. Orisch, D. Von der Linde, P. Balcou, G. Rey, J.-P. Chambaret, U. Teubner, D. Klöpfel, and W. Theobald, Phys. Rev. A 62, 023816 (2000).

[5] F. Quéré, C. Thaury, P. Monot, S. Dobosz, P. Martin, J.-P. Geindre, and P. Audebert, Phys. Rev. Lett. 96, 125004 (2006).

[6] Y. Nomura, R. Hörlein, P. Tzallas, B. Dromey, S. Rykovanov, Z. Major, J. Osterhoff, S. Karsch, L. Veisz, M. Zepf et al., Nat. Phys. 5, 124 (2009).

[7] J. H. Easter, A. G. Mordovanakis, B. Hou, A. G. Thomas, J. A. Nees, G. Mourou, and K. Krushelnick, Opt. Lett. 35, 3186 (2010).

[8] A. Borot, A. Malvache, X. Chen, D. Douillet, G. Iaquianiello, T. Lefrou, P. Audebert, J.-P. Geindre, G. Mourou, F. Quéré et al., Opt. Lett. 36, 1461 (2011).

[9] P. Heißler, R. Hörlein, J. M. Mikhailova, L. Waldecker, P. Tzallas, A. Buck, K. Schmid, C. Sears, F. Krausz, L. Veisz et al., Phys. Rev. Lett. 108, 235003 (2012).

[10] J. A. Wheeler, A. Borot, S. Monchocé, H. Vincenti, A. Ricci, A. Malvache, R. Lopez-Martens, and F. Quéré, Nat. Photonics 6, 829 (2012).

[11] S. Bastiani, A. Rousse, J. P. Geindre, P. Audebert, C. Quoix, G. Hamoniaux, A. Antonetti, and J.-C. Gauthier, Phys. Rev. E 56, 7179 (1997).

[12] F. Brandl, B. Hidding, J. Osterholz, D. Hemmers, A. Karmakar, A. Pukhov, and G. Pretzler, Phys. Rev. Lett. 102, 195001 (2009).

[13] A. G. Mordovanakis, J. Easter, N. Naumova, K. Popov, P.-E. Masson-Laborde, B. Hou, I. Sokolov, G. Mourou, I. V. Glazyrin, W. Rozmus et al., Phys. Rev. Lett. 103, 235001 (2009).

40 references, page 1 of 3
Abstract
The experimental work presented in this manuscript focuses on the non-linear response of plasma mirrors when driven by a sub-relativistic (~10^18 W/cm^2) ultra-short (~30fs) laser pulse. In particular, we studied the generation of attosecond pulses (1as=10^(-18) s) and electron beams from plasma mirror generated in controlled pump-probe experiment. One first important result exposed in this manuscript is the experimental observation of the anticorrelated emission behavior between high-order harmonics and electron beams with respect to plasma scale length. The second important result is the presentation of the « spatial domain interferometry » (SDI) diagnostic, d...
Subjects
free text keywords: Relativity, Attosecond, Plasma mirrors, Attosecondes, Miroir plasma, Relativité, [PHYS.PHYS.PHYS-PLASM-PH]Physics [physics]/Physics [physics]/Plasma Physics [physics.plasm-ph]
Funded by
EC| FEMTOELEC
Project
FEMTOELEC
Innovative Femtosecond laser-plasma based electron source for studying ultrafast structural dynamics
  • Funder: European Commission (EC)
  • Project Code: 306708
  • Funding stream: FP7 | SP2 | ERC
,
EC| LASERLAB-EUROPE
Project
LASERLAB-EUROPE
The Integrated Initiative of European Laser Research Infrastructures III
  • Funder: European Commission (EC)
  • Project Code: 284464
  • Funding stream: FP7 | SP4 | INFRA
,
RCUK| Attosecond Electron Dynamics in Molecular and Condensed Phase Systems
Project
  • Funder: Research Council UK (RCUK)
  • Project Code: EP/I032517/1
  • Funding stream: EPSRC
,
RCUK| Next Generation Attosecond Technology (Translation Grant)
Project
  • Funder: Research Council UK (RCUK)
  • Project Code: EP/F034601/1
  • Funding stream: EPSRC
40 references, page 1 of 3

44. Bourdier, A. Oblique incidence of a strong electromagnetic wave on a cold inhomogeneous electron plasma. Relativistic e ects. Phys. Fluids 26, 1804 1807 (1983).

45. Cicchitelli, L., Hora, H. & Postle, R. Longitudinal field components for laser beams in vacuum. Phys. Rev. A 41, 3727 3732 (1990). *Corresponding author. maimouna.bocoum@ensta‑paristech.fr [OpenAIRE]

[1] N. Burnett, H. Baldis, M. Richardson, and G. Enright, Appl. Phys. Lett. 31, 172 (1977).

[2] R. L. Carman, C. K. Rhodes, and R. F. Benjamin, Phys. Rev. A 24, 2649 (1981).

[3] D. von der Linde, T. Engers, G. Jenke, P. Agostini, G. Grillon, E. Nibbering, A. Mysyrowicz, and A. Antonetti, Phys. Rev. A 52, R25 (1995). [OpenAIRE]

[4] A. Tarasevitch, A. Orisch, D. Von der Linde, P. Balcou, G. Rey, J.-P. Chambaret, U. Teubner, D. Klöpfel, and W. Theobald, Phys. Rev. A 62, 023816 (2000).

[5] F. Quéré, C. Thaury, P. Monot, S. Dobosz, P. Martin, J.-P. Geindre, and P. Audebert, Phys. Rev. Lett. 96, 125004 (2006).

[6] Y. Nomura, R. Hörlein, P. Tzallas, B. Dromey, S. Rykovanov, Z. Major, J. Osterhoff, S. Karsch, L. Veisz, M. Zepf et al., Nat. Phys. 5, 124 (2009).

[7] J. H. Easter, A. G. Mordovanakis, B. Hou, A. G. Thomas, J. A. Nees, G. Mourou, and K. Krushelnick, Opt. Lett. 35, 3186 (2010).

[8] A. Borot, A. Malvache, X. Chen, D. Douillet, G. Iaquianiello, T. Lefrou, P. Audebert, J.-P. Geindre, G. Mourou, F. Quéré et al., Opt. Lett. 36, 1461 (2011).

[9] P. Heißler, R. Hörlein, J. M. Mikhailova, L. Waldecker, P. Tzallas, A. Buck, K. Schmid, C. Sears, F. Krausz, L. Veisz et al., Phys. Rev. Lett. 108, 235003 (2012).

[10] J. A. Wheeler, A. Borot, S. Monchocé, H. Vincenti, A. Ricci, A. Malvache, R. Lopez-Martens, and F. Quéré, Nat. Photonics 6, 829 (2012).

[11] S. Bastiani, A. Rousse, J. P. Geindre, P. Audebert, C. Quoix, G. Hamoniaux, A. Antonetti, and J.-C. Gauthier, Phys. Rev. E 56, 7179 (1997).

[12] F. Brandl, B. Hidding, J. Osterholz, D. Hemmers, A. Karmakar, A. Pukhov, and G. Pretzler, Phys. Rev. Lett. 102, 195001 (2009).

[13] A. G. Mordovanakis, J. Easter, N. Naumova, K. Popov, P.-E. Masson-Laborde, B. Hou, I. Sokolov, G. Mourou, I. V. Glazyrin, W. Rozmus et al., Phys. Rev. Lett. 103, 235001 (2009).

40 references, page 1 of 3
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