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One Additional Qubit is Enough: Encoded Embeddings for Boolean Components in Quantum Circuits.

, , , and . ISMVL, page 1-6. IEEE, (2019)

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Towards Reverse Engineering Reversible Logic., , , , , , and . CoRR, (2017)Efficient mapping of quantum circuits to the IBM QX architectures., , and . DATE, page 1135-1138. IEEE, (2018)QMDD-Based One-Pass Design of Reversible Logic: Exploring the Available Degree of Freedom (Work-in-Progress Report)., and . RC, volume 11106 of Lecture Notes in Computer Science, page 244-250. Springer, (2018)IC/IP piracy assessment of reversible logic., , , , , , and . ICCAD, page 5. ACM, (2018)Skipping Embedding in the Design of Reversible Circuits., and . ISMVL, page 173-178. IEEE Computer Society, (2017)On the Difficulty of Inserting Trojans in Reversible Computing Architectures., , , , , , and . CoRR, (2017)Compiling SU(4) quantum circuits to IBM QX architectures., and . ASP-DAC, page 185-190. ACM, (2019)Generalizing the Concept of Scalable Reversible Circuit Synthesis for Multiple-Valued Logic., , , , and . ISMVL, page 115-120. IEEE Computer Society, (2018)Mapping Quantum Circuits to IBM QX Architectures Using the Minimal Number of SWAP and H Operations., , and . DAC, page 142. ACM, (2019)Advanced Simulation of Quantum Computations., and . IEEE Trans. on CAD of Integrated Circuits and Systems, 38 (5): 848-859 (2019)