Squeezing and bunching of photons of coherent light interacting with two quantum anharmonic oscillators coupled through the angular momentum
摘要
The Hamiltonian and hence the equations of motion involving the field operators of two quantum anharmonic oscillators coupled through the angular momentum are constructed. The anharmonic terms are such that the conservative nature of the Hamiltonian is retained. The coupled differential equations involving the field operators are nonlinear and are noncommuting as well. The exact closed form analytical solutions of the field operators are certainly a challenging task to address. The numerical solutions for the field operators are also unlikely because of the presence of nonlinearity and the noncommuting nature of the field operators. We provide the solutions of the field operators by using the short time approximation. The solutions are used to investigate the squeezing and the antibunching of photons for composite coherent light interacting with two oscillators coupled through the angular momentum. The second order variances for the canonically conjugate quadrature of both modes are exhibited as a function of dimensionless coupling and anharmonic terms. By considering the phase angles of composite coherent light as zero, we obtain the squeezing in one of the quadrature components