The potential-vorticity gradients in a meridional two-layer current are important here: besides , one has and . They must be retained when linearizing, even though the basic relative vorticity vanishes.
Let and . For a normal mode the two-layer quasi-geostrophic potential vorticity amplitudes are
Because the basic velocities are northward in the two layers, their advection frequencies are and . The uniform forcing has no perturbation, . The linear equations are therefore
In particular, a perturbation's zonal velocity advects the basic interface-induced zonal potential-vorticity gradient. Substitution of the plane wave gives
A nonzero disturbance exists exactly when the determinant vanishes. The requested relation for linear stability of a meridional two-layer current is
Equivalently, with ,
Its discriminant is
For , exponential baroclinic instability occurs when this discriminant is negative; otherwise the two frequencies are real. This also displays the stabilizing contribution of the planetary vorticity gradient when . As a check, gives the uncoupled barotropic mode and baroclinic mode frequencies and .