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quant-ph2026

Resource-efficient energy-based operator selection in fermionic ADAPT-VQE via exact Hamiltonian transformation

Emanuele Rossi, Erik Rosendahl Kjellgren, Artur F. Izmaylov +3

The energy-based approach to operator selection in ADAPT-VQE relies on reconstructing the one-parameter energy landscape for each operator in the pool. In fermionic implementations…

quant-ph2026

Orbital-optimized spin-adapted multistate contracted VQE for excited states and properties on quantum hardware

Erik Rosendahl Kjellgren, Karl Michael Ziems, Peter Reinholdt +3

We introduce the orbital-optimized multistate contracted variational quantum eigensolver (oo-MC-VQE) method with spin-adapted operators for the computation of ground and excited st…

quant-ph2026

Quantum error mitigation using energy sampling and extrapolation enhanced Clifford data regression

Zhongqi Zhao, Erik Rosendahl Kjellgren, Sonia Coriani +3

Error mitigation is essential for the practical implementation of quantum algorithms on noisy intermediate-scale quantum (NISQ) devices. This work explores and extends Clifford Dat…

quant-ph2025

Cost-effective scalable quantum error mitigation for tiled Ansätze

Oskar Graulund Lentz Rasmussen, Erik Kjellgren, Peter Reinholdt +4

We introduce a cost-effective quantum error mitigation technique that builds upon the recent Ansatz-based gate and readout error mitigation method (M0). The technique, tiled M0, le…

quant-ph2025

Hyperfine Coupling Constants on Quantum Computers: Performance, Errors, and Future Prospects

Phillip W. K. Jensen, Gustav Stausbøll Hedemark, Karl Michael Ziems +6

We present the first implementation and computation of electron spin resonance isotropic hyperfine coupling constants (HFCs) on quantum hardware. As illustrative test cases, we com…

quant-ph2025

Exact closed-form expression for unitary spin-adapted fermionic singlet double excitation operators

Erik Rosendahl Kjellgren, Karl Michael Ziems, Peter Reinholdt +3

We derive exact closed-form expressions for the matrix exponential of the anti-Hermitian spin-adapted singlet double excitation fermionic operators. These expressions enable the ef…