Pradeep Niroula,Christopher David White,Qingfeng Wang et al.
Pradeep Niroula et al.
Magic is a property of quantum states that enables universal fault-tolerant quantum computing using simple sets of gate operations. Understanding the mechanisms by which magic is created or destroyed is, therefore, a crucial step towards ef...
Controllable orbital angular momentum monopoles in chiral topological semimetals [0.03%]
手性拓扑半金属中的轨道角动量单极子的调控
Yun Yen,Jonas A Krieger,Mengyu Yao et al.
Yun Yen et al.
The emerging field of orbitronics aims to generate and control orbital angular momentum for information processing. Chiral crystals are promising orbitronic materials because they have been predicted to host monopole-like orbital textures, ...
Christina L Hueschen,Li-Av Segev-Zarko,Jian-Hua Chen et al.
Christina L Hueschen et al.
During host infection, Toxoplasma gondii and related unicellular parasites move using gliding, which differs fundamentally from other known mechanisms of eukaryotic cell motility. Gliding is thought to be powered by a thin layer of flowing ...
Michal P Heller,Alexandre Serantes,Michał Spaliński et al.
Michal P Heller et al.
As an effective theory, relativistic hydrodynamics is fixed by symmetries up to a set of transport coefficients. A lot of effort has been devoted to explicit calculations of these coefficients. Here we adopt a more general approach, deployi...
Simon Geyer,Bence Hetényi,Stefano Bosco et al.
Simon Geyer et al.
Semiconductor spin qubits offer the potential to employ industrial transistor technology to produce large-scale quantum computers. Silicon hole spin qubits benefit from fast all-electrical qubit control and sweet spots to counteract charge ...
Collective energy gap of preformed Cooper pairs in disordered superconductors [0.03%]
无序超导体中库珀对的集体能隙
Thomas Dubouchet,Benjamin Sacépé,Johanna Seidemann et al.
Thomas Dubouchet et al.
In most superconductors, the transition to the superconducting state is driven by the binding of electrons into Cooper pairs [1]. The condensation of these pairs into a single, phase coherent, quantum state takes place at the same time as t...
Martin A W Schoen,Danny Thonig,Michael L Schneider et al.
Martin A W Schoen et al.
Magnetic damping is of critical importance for devices that seek to exploit the electronic spin degree of freedom, as damping strongly affects the energy required and speed at which a device can operate. However, theory has struggled to qua...
Sequence-specific interactions determine viscoelasticity and aging dynamics of protein condensates [0.03%]
序列特异性相互作用决定蛋白质凝聚物的粘弹性及老化动力学
Ibraheem Alshareedah,Wade M Borcherds,Samuel R Cohen et al.
Ibraheem Alshareedah et al.
Biomolecular condensates are viscoelastic materials. Here, we investigate the determinants of sequence-encoded and age-dependent viscoelasticity of condensates formed by the prion-like low-complexity domain of the protein hnRNP A1 and its d...
Non-Hermitian dynamics and non-reciprocity of optically coupled nanoparticles [0.03%]
光学耦合纳米颗粒的非厄米动力学与非互易性
Manuel Reisenbauer,Henning Rudolph,Livia Egyed et al.
Manuel Reisenbauer et al.
Non-Hermitian dynamics, as observed in photonic, atomic, electrical and optomechanical platforms, holds great potential for sensing applications and signal processing. Recently, fully tuneable non-reciprocal optical interaction has been dem...
Induced superconducting correlations in a quantum anomalous Hall insulator [0.03%]
量子反常霍尔绝缘体中的诱导超导关联
Anjana Uday,Gertjan Lippertz,Kristof Moors et al.
Anjana Uday et al.
Thin films of ferromagnetic topological insulator materials can host the quantum anomalous Hall effect without the need for an external magnetic field. Inducing Cooper pairing in such a material is a promising way to realize topological sup...