The unequal-power higher-power differencesqueezing in the multimode Schrodinger-cat state entangledlight field with three macroscopically distinguishablequantum states superposition

Wang Ju-xia · Chinese journal of atomic and molecular physics · 2004

By utilizing the general theory of multimode squeezed states, the effects of generalized nonlinear unequal-power higher-power difference in the multimode Schrodinger-cat state entangled light field is studied, that is formed by the linear superposition of three macroscopical distinguishable quantum states named the multimode complex conjugate coherent state, multimode complex conjugate imaginary coherent state and multimode vacuum state. It is found that 1) the difference of the cat state entangled light field is independent of its vacuum state component; 2) in some cases, the two quadrature phase components of this cat state entangled light field present unequal-power higher-power difference properties respectively ; 3) under some other conditions, the difference effects of two quadrature phase components of the state mentioned above can exist at the same time. The two preceding results stated above are in conformity with the uncertainty principle, but the last is not. It is called two-sided difference squeezing phenomenon and could be very useful in the application of squeezed light on light quanta communication.

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