Experimental observation of energy-band Riemann surface
arXiv:2510.08819 · doi:10.1126/sciadv.aec8239
Abstract
Non-Hermiticity naturally arises in many physical systems that exchange energy with their environment. The presence of non-Hermiticity leads to many novel topological physics phenomena and device applications. In the non-Hermitian energy band theory, the foundation of these physics and applications, both energies and wavevectors can take complex values. The energy bands thus become a Riemann surface, and such an energy-band Riemann surface underlies all the important signatures of non-Hermitian topological physics phenomena. Despite a long history and recent theoretical interests, the energy-band Riemann surface has not been experimentally studied. Here we provide a photonic observation of the energy-band Riemann surface of a non-Hermitian system. This is achieved by applying a tunable imaginary gauge transformation on the platform of the photonic synthetic frequency dimension. From the measured topology of the Riemann surface, we reveal the complex-energy winding, the open-boundary-condition spectrum, the generalized Brillouin zone, and the branch points. Our findings demonstrate a unified framework in the studies of diverse effects in non-Hermitian topological physics through an experimental observation of energy-band Riemann surfaces.
References in corpus (25)
- Non-Hermitian Physics
- Topological Origin of Non-Hermitian Skin Effects
- Efficient Light Funneling based on the non-Hermitian Skin Effect
- Non-Hermitian Topological Sensors
- Observation of arbitrary topological windings of a non-Hermitian band
- Angle-resolved photoemission spectroscopy and its application to topological materials
- Exponentially-enhanced quantum sensing with non-Hermitian lattice dynamics
- Experimental band structure spectroscopy along a synthetic dimension
- Angle-resolved photoemission spectroscopy
- Observation of exceptional points and skin effect correspondence in non-Hermitian phononic crystals
- Anomalous single-mode lasing induced by nonlinearity and the non-Hermitian skin effect
- Two-dimensional non-Hermitian skin effect in an ultracold Fermi gas
- Non-Abelian lattice gauge fields in the photonic synthetic frequency dimension
- Eigenvalue topology of non-Hermitian band structures in two and three dimensions
- Geometric Origin of Non-Bloch PT Symmetry Breaking
- A comprehensive review on developments of synthetic dimensions
- Multi-dimensional band structure spectroscopy in the synthetic frequency dimension
- Quantized topological energy pumping and Weyl points in Floquet synthetic dimensions with a driven-dissipative photonic molecule
- Observation of non-Hermitian antichiral edge currents
- Anatomy of open-boundary bulk in multiband non-Hermitian systems
- Evidencing non-Bloch dynamics in temporal topolectrical circuits
- Point-Gap Bound States in Non-Hermitian Systems
- Abnormal Frequency Response Determined by Saddle Points in Non-Hermitian Crystal Systems
- One-dimensional non-Hermitian band structures as Riemann surfaces
- Creating high-dimensional topological physics using a single ring resonator