Highly efficient broadband conversion of light polarization by composite retarders
arXiv:1110.1289 · doi:10.1364/JOSAA.29.000265
Abstract
Driving on an analogy with the technique of composite pulses in quantum physics, we propose highly efficient broadband polarization converters composed of sequences of ordinary retarders rotated at specific angles with respect to their fast-polarization axes.
5 pages, 3 figures; check JOSA A 2011
References in corpus (6)
- Quantum computing with trapped ions
- Arbitrarily accurate composite pulses
- High-fidelity local addressing of trapped ions and atoms by composite sequences of laser pulses
- Arbitrary precision composite pulses for NMR quantum computing
- Broadband adiabatic conversion of light polarization
- Scalable uniform construction of highly-conditional quantum gates
Cited by in corpus (17)
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- Broadband terahertz half-wave plate with multi-layers metamaterial via quantum engineering
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- Highly efficient broadband polarization retarders and tunable polarization filters made of composite stacks of ordinary wave plates
- Nested composite NOT gates for quantum computation
- Error-compensation measurements on polarization qubits
- Broadband polarization rotator with tunable rotation angle composed of three wave-plates
- Broadband composite nonreciprocal polarization wave plates and optical isolators
- Achromatic polarization rotator with tunable rotation angle
- Fault-tolerant composite Householder reflection
- Arbitrary polarization control by magnetic field variation
- Ultrabroadband, ultranarrowband and ultrapassband composite polarisation half-wave plates, ultrabroadband composite polarisation pi-rotators and on the quantum-classical analogy
- Variable Ultra-broadband and Narrowband Composite Polarization Retarders