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In particular, questions regarding the existence of the low-energy enhancement in the photon strength function are addressed.
A new and model-independent experimental method has been developed to determine the energy dependence of the photon strength function.
Isaak, J; Savran, D; Löher, B; Beck, T; Bhike, M; Gayer, U; Krishichayan, ; Pietralla, N; Scheck, M; Tornow, W Wernerr, V; Zilges, A; Zweidinger, M, The concept of nuclear photon strength functions: A model-independent approach via reactions, Physics Letters B, vol. 788 (January, 2019), pp. 225-230, Elsevier BV [doi] [abs].
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where Δ is the pump-cavity detuning and U the photon-photon interaction strength.
This analysis shows that odd-photon absorption processes are largely determined by the one-photon absorption strength, whereas all even-photon absorption strengths are largely dominated by the two-photon absorption strength, in both cases modulated by powers of the polarizability of the final excited state.
We were able to extend the voltage range to +/−160V before two-photon signal strength dropped by more than a factor of two.
The theoretical treatment of multiphoton absorption has also been pushed forward during the last decades, and computational methods for the calculation of two-photon transition strengths are available for SCF-based as well as for correlated wave-function-based methods.
In Figure 2, the resistance per unit length of the 120° DW versus the DW width in the presence of x-linearly polarized photon for different strength of the exchange interaction is shown.
We use the diffusion equation of optical transport as the light propagation model, which can be written as [ 16] ∂ Φ (r, t ) ∂ t + c μ a Φ (r, t ) − c ∇ ⋅ [ D ∇ Φ (r, t ) ] = q (r, t ) (1 where Φis the optical fluence, q is the photon density source strength and c is light speed in the medium.
The swelling properties of so-called 'balanced' microgel particles (i.e. containing the same number of positive and negative monomers in the initial mixture), but containing variable amounts of the crosslinking monomer, have been investigated as a function of ionic strength using photon correlation spectroscopy.
U quantifies the strength of the photon-photon interaction.
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