Residual detuning in the laboratory-frame anti-Jaynes--Cummings model with a squeezed vacuum
Onyango Stephen Okeyo
Abstract
The laboratory-frame anti-Jaynes--Cummings (AJC) interaction retains a residual detuning 2fλ that is absent from the rotating-frame model. We map two proposed remedies---a Kerr shift χ( a a)2 and collective Dicke coupling of N two-level emitters---for a squeezed vacuum on that ladder (r=1, n=2 r 1.38). All quoted contrasts are the amplitude of the first turning point of the atomic ground-state population, which coincides with the two-level formula C=1/[1+(2f+χ)2] at r=0 to 10-9. Three results follow. (i)~A single Kerr strength never restores unit contrast at r=1; the r=0 n-dependent shift χ(2n+1) cannot cancel 2fλ on every occupied Fock component. (ii)~The exact r=1 contrast at χ=0 is not reproduced by an incoherent sum Σn Pn(r)\,Cn built from the r=0 two-level formula; pointwise deviations are several tenths. (iii)~Collective coupling raises the contrast systematically. At f=5 one finds C=0.140 (N=1) and C=0.575 (N=8), above the unsqueezed value 8/[8+(2f)2]=0.074. The N=16 point at this f remains truncation-limited and is not quoted to three digits. The same N(2f)2 estimate for C=1/2 places trapped-ion values f 102--103 outside the present construction. The relevant platform is ultrastrong circuit QED with f 1--10. The calculation is a numerical control landscape, not a new solvable limit.
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