Quantum dots are one of the paradigmatic solid-state systems for quantum engineering, providing an outstanding tunability to explore fundamental quantum phenomena. Here we show that non-Hermitian many-body topological modes can be realized in a quantum dot chain by utilizing a gate-tunable modulation of dissipation, and they emerge purely because of the non-Hermiticity. By exactly solving the non-Hermitian interacting description both with exact diagonalization and tensor networks, we demonstrate that these topological modes are robust even in the presence strong interactions, leading to a strongly correlated topological many-particle state. Our results put forward quantum dot arrays as a platform for engineering non-Hermitian many-body top...
Quantum devices characterized by non-Hermitian topology are predicted to show highly robust and pote...
In this dissertation we study the properties of quantum many-body systems whose behavior is governed...
Topological phenomena in condensed matter physics have been investigated intensively in the past dec...
While Hermiticity lies at the heart of quantum mechanics, recent experimental advances in controllin...
Recently, the search for topological states of matter has turned to non-Hermitian systems, which exh...
Dissipation in open systems enriches the possible symmetries of the Hamiltonians beyond the Hermitia...
This dissertation establishes and investigates new phenomena in diverse interacting many-body quantu...
Topological edge modes are excitations that are localized at the materials' edges and yet are charac...
We present a minimal non-Hermitian model where a topologically nontrivial complex energy spectrum is...
We present an idealized model involving interacting quantum dots that can support both the dynamical...
The topological features of quantum many-body wavefunctions are known to have profound consequences ...
Many-body interactions give rise to the appearance of exotic phases in Hermitian physics. Despite th...
Non-Hermitian lattices under semi-infinite boundary conditions sustain an extensive number of expone...
One dimensional topological insulators are characterized by edge states with exponentially small ene...
International audienceOne dimensional topological insulators are characterized by edge states with e...
Quantum devices characterized by non-Hermitian topology are predicted to show highly robust and pote...
In this dissertation we study the properties of quantum many-body systems whose behavior is governed...
Topological phenomena in condensed matter physics have been investigated intensively in the past dec...
While Hermiticity lies at the heart of quantum mechanics, recent experimental advances in controllin...
Recently, the search for topological states of matter has turned to non-Hermitian systems, which exh...
Dissipation in open systems enriches the possible symmetries of the Hamiltonians beyond the Hermitia...
This dissertation establishes and investigates new phenomena in diverse interacting many-body quantu...
Topological edge modes are excitations that are localized at the materials' edges and yet are charac...
We present a minimal non-Hermitian model where a topologically nontrivial complex energy spectrum is...
We present an idealized model involving interacting quantum dots that can support both the dynamical...
The topological features of quantum many-body wavefunctions are known to have profound consequences ...
Many-body interactions give rise to the appearance of exotic phases in Hermitian physics. Despite th...
Non-Hermitian lattices under semi-infinite boundary conditions sustain an extensive number of expone...
One dimensional topological insulators are characterized by edge states with exponentially small ene...
International audienceOne dimensional topological insulators are characterized by edge states with e...
Quantum devices characterized by non-Hermitian topology are predicted to show highly robust and pote...
In this dissertation we study the properties of quantum many-body systems whose behavior is governed...
Topological phenomena in condensed matter physics have been investigated intensively in the past dec...