We give a brief introduction to Hamiltonian optics and Lie algebraic methods. We use these methods to describe the operators governing light propagation, refraction, and reflection in phase space. The method offers a systematic way to find aberration coefficients of any order for arbitrary rotationally symmetric optical systems. The coefficients from the Lie method are linked to the Seidel aberration coefficients. Furthermore, the property of summing individual surface contributions is preserved by the Lie algebraic theory. Two examples are given to validate the proposed methodology with good results.</p
An extensive theory of aberration coefficients of symmetrical optical systems has been developed by...
An extensive theory of aberration coefficients of symmetrical optical systems has been developed by...
Orbital dynamics in particle accelerators, and ray tracing in light optics, are examples of Hamilto...
We give a brief introduction to Hamiltonian optics and Lie algebraic methods. We use these methods t...
We give a brief introduction to Hamiltonian optics and Lie algebraic methods. We use these methods t...
We give a brief introduction to Hamiltonian optics and Lie algebraic methods. We use these methods t...
We give a brief introduction to Hamiltonian optics and Lie algebraic methods. We use these methods t...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
The Lie algebraic method offers a systematic way to find aberration coefficients of any order for pl...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
We describe the results and objectives of a research line to develop Lie-algebraic and group-theoret...
An extensive theory of aberration coefficients of symmetrical optical systems has been developed by...
An extensive theory of aberration coefficients of symmetrical optical systems has been developed by...
Orbital dynamics in particle accelerators, and ray tracing in light optics, are examples of Hamilto...
We give a brief introduction to Hamiltonian optics and Lie algebraic methods. We use these methods t...
We give a brief introduction to Hamiltonian optics and Lie algebraic methods. We use these methods t...
We give a brief introduction to Hamiltonian optics and Lie algebraic methods. We use these methods t...
We give a brief introduction to Hamiltonian optics and Lie algebraic methods. We use these methods t...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
The Lie algebraic method offers a systematic way to find aberration coefficients of any order for pl...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
We apply the Lie algebraic method to reflecting optical systems with plane-symmetric freeform mirror...
We describe the results and objectives of a research line to develop Lie-algebraic and group-theoret...
An extensive theory of aberration coefficients of symmetrical optical systems has been developed by...
An extensive theory of aberration coefficients of symmetrical optical systems has been developed by...
Orbital dynamics in particle accelerators, and ray tracing in light optics, are examples of Hamilto...