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Bond hardening is a process of creating a new chemical bond by strong laser fields—an effect opposite to bond softening. However, it is not opposite in the sense that the bond becomes stronger, but in the sense that the molecule enters a state that is diametrically opposite to the bond-softened state. Such states require laser pulses of high intensity, in the range of 1013–1015 W/cm2, and they disappear once the pulse is gone.

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  • Bond hardening (en)
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  • Bond hardening is a process of creating a new chemical bond by strong laser fields—an effect opposite to bond softening. However, it is not opposite in the sense that the bond becomes stronger, but in the sense that the molecule enters a state that is diametrically opposite to the bond-softened state. Such states require laser pulses of high intensity, in the range of 1013–1015 W/cm2, and they disappear once the pulse is gone. (en)
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  • http://commons.wikimedia.org/wiki/Special:FilePath/Bond_hardening_induced_by_intense_laser_field.png
  • http://commons.wikimedia.org/wiki/Special:FilePath/Dynamics_of_bond_hardening.png
  • http://commons.wikimedia.org/wiki/Special:FilePath/Signature_of_bond_hardening.png
  • http://commons.wikimedia.org/wiki/Special:FilePath/Zero-photon_dissociation.png
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  • Bond hardening is a process of creating a new chemical bond by strong laser fields—an effect opposite to bond softening. However, it is not opposite in the sense that the bond becomes stronger, but in the sense that the molecule enters a state that is diametrically opposite to the bond-softened state. Such states require laser pulses of high intensity, in the range of 1013–1015 W/cm2, and they disappear once the pulse is gone. (en)
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