Modern Experimental Techniques in Ultrafast Atomic …
285
41. D.J. Kane, R. Trebino, Single-shot measurement of the intensity and phase of an arbitrary
ultrashort pulse by using frequency-resolved optical gating. Opt. Lett. 18(10), 823–825 (1993)
42. R. Trebino et al., Measuring ultrashort laser pulses in the time-frequency domain using
frequency-resolved optical gating. Rev. Sci. Instrum. 68(9), 3277–3295 (1997)
43. K.W. DeLong, R. Trebino, D.J. Kane, Comparison of ultrashort-pulse frequency-resolvedoptical-gating traces for three common beam geometries. JOSA B 11(9), 1595–1608 (1994)
44. C. Iaconis, I.A. Walmsley, Spectral phase interferometry for direct electric-field reconstruction
of ultrashort optical pulses. Opt. Lett. 23(10), 792–794 (1998)
45. P. O’shea et al., Highly simplified device for ultrashort-pulse measurement. Opt. Lett. 26(12),
932–934 (2001)
46. X. Liu, R. Trebino, A.V. Smith, Numerical simulations of ultrasimple ultrashort-laser-pulse
measurement. Opt. Expr. 15(8), 4585–4596 (2007)
47. N. Ekanayake et al., Mechanisms and time-resolved dynamics for trihydrogen cation (H3+)
formation from organic molecules in strong laser fields. Sci. Rep. 7(1), 1–12 (2017)
48. J. Strohaber, A.A. Kolomenskii, H.A. Schuessler, Molecular rearrangement of aniline in femtosecond radiation. J. Phys. B Atom. Molec. Opt. Phys. 53(17), 175602 (2020)
49. W.C. Wiley, I.H. McLaren, Time-of-Flight Mass Spectrometer with Improved Resolution. Rev.
Sci. Instrum. 26(12), 1150–1157 (1955)
50. H. Xu et al., Communication: two stages of ultrafast hydrogen migration in methanol driven
by intense laser fields (2010)
51. N.G. Kling et al., Time-resolved molecular dynamics of single and double hydrogen migration
in ethanol. Nat. Commun. 10(1), 2813 (2019). issn: 2041-1723
52. L. Zhang et al., Path-selective investigation of intense laser-pulse-induced fragmentation
dynamics in triply charged 1,3-butadiene. J. Phys. B Atom. Molec. Opt. Phys. 45(8), 085603
(2012)
53. J.B. Williams et al., Probing the dynamics of dissociation of methane following core ionization
using three-dimensional molecular-frame photoelectron angular distributions. J. Phys. B Atom.
Molec. Opt. Phys. 45(19), 194003 (2012)
54. H. Schmidt-Böcking et al., Electronic transitions in highly charged ion-atom collisions. Nucl.
Instrum. Methods Phys. Res. Sect. B Beam Interact. Mater. Atoms 43(3), 272–278 (1989)
55. V. Frohne et al., Measurements of recoil and projectile momentum distributions for 19-MeV
F9+ + Ne collisions. Phys. Rev. A 53, 2407–2416 (1996)
56. R. Dörner et al., Three-body interactions in proton-helium angular scattering. Phys. Rev. Lett.
63, 147–150 (1989)
57. R. Ali et al., Q-value measurements in charge-transfer collisions of highly charged ions with
atoms by recoil longitudinal momentum spectroscopy. Phys. Rev. Lett. 69, 2491–2494 (1992)
58. J. Ullrich et al., Recoil-ion and electron momentum spectroscopy: reaction- microscopes. Rep.
Progr. Phys. 66, 1463–1545 (2003)
59. R. Dörner et al., Cold target recoil ion momentum spectroscopy: a ’momentum microscope’to
view atomic collision dynamics. Phys. Rep. 330(2–3), 95–192 (2000)
60. C. Wu et al., Nonsequential and sequential fragmentation of CO 2 3+ in intense laser fields.
Phys. Rev. Lett. 110(10), 103601 (2013)
61. A.T.J.B. Eppink, D.H. Parker, Velocity map imaging of ions and electrons using electrostatic
lenses: application in photoelectron and photofragment ion imaging of molecular oxygen. Rev.
Sci. Instrum. 68(9), 3477–3484 (1997)
62. D.W. Chandler, P.L. Houston, Two-dimensional imaging of stateselected photodissociation
products detected by multiphoton ionization. J. Chem. Phys. 87(2), 1445–1447 (1987)
63. C. Marceau et al., Wavelength scaling of high harmonic generation for 267 nm, 400 nm and
800 nm driving laser pulses. J. Phys. Commun. 1(1), 015009 (2017)
64. N.H. Abel, “Auflösung einer mechanischen Aufgabe. Journal für die reine und angewandte
Mathematik 1886(1), 159 (1826)
65. L. Nahon, G. Garcia, I. Powis, Two-dimensional charged particle image inversion using a polar
basis function expansion. Rev. Sci. Instrum. 75(11), 4989–4996 (2004)
285
41. D.J. Kane, R. Trebino, Single-shot measurement of the intensity and phase of an arbitrary
ultrashort pulse by using frequency-resolved optical gating. Opt. Lett. 18(10), 823–825 (1993)
42. R. Trebino et al., Measuring ultrashort laser pulses in the time-frequency domain using
frequency-resolved optical gating. Rev. Sci. Instrum. 68(9), 3277–3295 (1997)
43. K.W. DeLong, R. Trebino, D.J. Kane, Comparison of ultrashort-pulse frequency-resolvedoptical-gating traces for three common beam geometries. JOSA B 11(9), 1595–1608 (1994)
44. C. Iaconis, I.A. Walmsley, Spectral phase interferometry for direct electric-field reconstruction
of ultrashort optical pulses. Opt. Lett. 23(10), 792–794 (1998)
45. P. O’shea et al., Highly simplified device for ultrashort-pulse measurement. Opt. Lett. 26(12),
932–934 (2001)
46. X. Liu, R. Trebino, A.V. Smith, Numerical simulations of ultrasimple ultrashort-laser-pulse
measurement. Opt. Expr. 15(8), 4585–4596 (2007)
47. N. Ekanayake et al., Mechanisms and time-resolved dynamics for trihydrogen cation (H3+)
formation from organic molecules in strong laser fields. Sci. Rep. 7(1), 1–12 (2017)
48. J. Strohaber, A.A. Kolomenskii, H.A. Schuessler, Molecular rearrangement of aniline in femtosecond radiation. J. Phys. B Atom. Molec. Opt. Phys. 53(17), 175602 (2020)
49. W.C. Wiley, I.H. McLaren, Time-of-Flight Mass Spectrometer with Improved Resolution. Rev.
Sci. Instrum. 26(12), 1150–1157 (1955)
50. H. Xu et al., Communication: two stages of ultrafast hydrogen migration in methanol driven
by intense laser fields (2010)
51. N.G. Kling et al., Time-resolved molecular dynamics of single and double hydrogen migration
in ethanol. Nat. Commun. 10(1), 2813 (2019). issn: 2041-1723
52. L. Zhang et al., Path-selective investigation of intense laser-pulse-induced fragmentation
dynamics in triply charged 1,3-butadiene. J. Phys. B Atom. Molec. Opt. Phys. 45(8), 085603
(2012)
53. J.B. Williams et al., Probing the dynamics of dissociation of methane following core ionization
using three-dimensional molecular-frame photoelectron angular distributions. J. Phys. B Atom.
Molec. Opt. Phys. 45(19), 194003 (2012)
54. H. Schmidt-Böcking et al., Electronic transitions in highly charged ion-atom collisions. Nucl.
Instrum. Methods Phys. Res. Sect. B Beam Interact. Mater. Atoms 43(3), 272–278 (1989)
55. V. Frohne et al., Measurements of recoil and projectile momentum distributions for 19-MeV
F9+ + Ne collisions. Phys. Rev. A 53, 2407–2416 (1996)
56. R. Dörner et al., Three-body interactions in proton-helium angular scattering. Phys. Rev. Lett.
63, 147–150 (1989)
57. R. Ali et al., Q-value measurements in charge-transfer collisions of highly charged ions with
atoms by recoil longitudinal momentum spectroscopy. Phys. Rev. Lett. 69, 2491–2494 (1992)
58. J. Ullrich et al., Recoil-ion and electron momentum spectroscopy: reaction- microscopes. Rep.
Progr. Phys. 66, 1463–1545 (2003)
59. R. Dörner et al., Cold target recoil ion momentum spectroscopy: a ’momentum microscope’to
view atomic collision dynamics. Phys. Rep. 330(2–3), 95–192 (2000)
60. C. Wu et al., Nonsequential and sequential fragmentation of CO 2 3+ in intense laser fields.
Phys. Rev. Lett. 110(10), 103601 (2013)
61. A.T.J.B. Eppink, D.H. Parker, Velocity map imaging of ions and electrons using electrostatic
lenses: application in photoelectron and photofragment ion imaging of molecular oxygen. Rev.
Sci. Instrum. 68(9), 3477–3484 (1997)
62. D.W. Chandler, P.L. Houston, Two-dimensional imaging of stateselected photodissociation
products detected by multiphoton ionization. J. Chem. Phys. 87(2), 1445–1447 (1987)
63. C. Marceau et al., Wavelength scaling of high harmonic generation for 267 nm, 400 nm and
800 nm driving laser pulses. J. Phys. Commun. 1(1), 015009 (2017)
64. N.H. Abel, “Auflösung einer mechanischen Aufgabe. Journal für die reine und angewandte
Mathematik 1886(1), 159 (1826)
65. L. Nahon, G. Garcia, I. Powis, Two-dimensional charged particle image inversion using a polar
basis function expansion. Rev. Sci. Instrum. 75(11), 4989–4996 (2004)
