{"total":10,"items":[{"citing_arxiv_id":"2607.08315","ref_index":59,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Magnetic control of Goos-H\\\"anchen shifts and group delay time in monolayer WSe$_2$","primary_cat":"cond-mat.mes-hall","submitted_at":"2026-07-09T09:55:55+00:00","verdict":"CONDITIONAL","verdict_confidence":"HIGH","novelty_score":4.0,"formal_verification":"none","one_line_summary":"Magnetic barriers on monolayer WSe2 produce spin- and valley-dependent oscillatory Goos-Hänchen shifts and group delay times that can be tuned by field, energy, angle, and barrier width.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2607.02077","ref_index":3,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Anisotropic tunneling through magnetic barriers in 8-Pmmn borophene","primary_cat":"cond-mat.mes-hall","submitted_at":"2026-07-02T12:16:33+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":4.0,"formal_verification":"none","one_line_summary":"Theoretical calculations predict strong angular anisotropy in transmission and tunable conductance for Dirac electrons through magnetic barriers in 8-Pmmn borophene.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2605.14436","ref_index":20,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Periodic Behavior of Topology in Graphene with Nanohole Array","primary_cat":"cond-mat.mes-hall","submitted_at":"2026-05-14T06:32:11+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":6.0,"formal_verification":"none","one_line_summary":"Nontrivial band topology in graphene with nanohole arrays appears periodically with superstructure size m (period 2 for triangular arrays, period 6 for honeycomb arrays).","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2605.14216","ref_index":19,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Engineering Delocalization in Graphene Nanoribbons via Quasiperiodic Edges and Electronic Interactions","primary_cat":"cond-mat.mes-hall","submitted_at":"2026-05-14T00:18:37+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":6.0,"formal_verification":"none","one_line_summary":"Quasiperiodic Fibonacci edges in zigzag graphene nanoribbons combined with moderate electron interactions induce a conductive regime with transmission oscillations, while non-interacting and strongly interacting cases remain localized.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2605.02383","ref_index":87,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Engineering THz-frequency light generation, detection and manipulation through graphene","primary_cat":"cond-mat.mes-hall","submitted_at":"2026-05-04T09:21:10+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":2.0,"formal_verification":"none","one_line_summary":"Graphene's high conductivity, fast carrier dynamics, and tunability enable engineering of THz-frequency photodetectors, modulators, and sources.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2604.26300","ref_index":21,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Strain and Twist Engineering of Interfacial Thermal Transport in Homo- and Hetero-Interfaces of Graphene and Hexagonal Boron Nitride","primary_cat":"cond-mat.mes-hall","submitted_at":"2026-04-29T04:58:38+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":6.0,"formal_verification":"none","one_line_summary":"Homogeneous graphene/h-BN interfaces show strong vertical thermal conductance reduction under strain and twist, whereas heterogeneous interfaces are insensitive to twist but respond to strain.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2604.19297","ref_index":3,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Quantum transport in gapped graphene under strain and laser--electrostatic barriers","primary_cat":"cond-mat.mes-hall","submitted_at":"2026-04-21T10:04:29+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":3.0,"formal_verification":"none","one_line_summary":"Transmission in gapped graphene under combined strain and laser-electrostatic barriers shows Fano-type oscillations that strengthen at moderate strain, shift with incidence energy, and respond differently to laser amplitude versus frequency.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"2309.14119","ref_index":16,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Hopf Semimetals","primary_cat":"cond-mat.mes-hall","submitted_at":"2023-09-25T13:19:44+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":7.0,"formal_verification":"none","one_line_summary":"Hopf semimetals are 4D gapless phases constructed via unstable homotopy maps from T^3 to S^2 that host nodal lines carrying Hopf flux along with unique gapless Fermi-arc, drumhead, Fermi-surface, and corner states.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"1907.08960","ref_index":24,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Exploring Event Horizons and Hawking Radiation through Deformed Graphene Membranes","primary_cat":"cond-mat.mes-hall","submitted_at":"2019-07-21T12:08:14+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":5.0,"formal_verification":"none","one_line_summary":"Simulations indicate that negative-curvature graphene membranes can form stable analogue horizons whose local density of states exhibits thermal character at a few tens of Kelvin.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null},{"citing_arxiv_id":"1906.11987","ref_index":9,"ref_count":1,"confidence":0.55,"is_internal_anchor":false,"paper_title":"Electronic Structure of Graphene with two Strains and Double Barrier","primary_cat":"cond-mat.mes-hall","submitted_at":"2019-06-27T22:49:01+00:00","verdict":"UNVERDICTED","verdict_confidence":"LOW","novelty_score":3.0,"formal_verification":"none","one_line_summary":"Strain engineering in graphene with double barriers produces collimation, channels, surface states and confinement for Dirac fermions, with calculated transmission and conductance.","context_count":0,"top_context_role":null,"top_context_polarity":null,"context_text":null}],"limit":50,"offset":0}