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Pith Number

pith:LYZ7EHWZ

pith:2026:LYZ7EHWZ35PU6ODYUWRMROMSCQ
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Reconfigurable chiral superconductivity

Eli Zeldov, Gal Shavit, Kenji Watanabe, Long Ju, Martin E. Huber, Nadav Auerbach, Niladri-Sekhar Kander, Surajit Dutta, Takashi Taniguchi, Tonghang Han, Yaozhang Zhou, Yuri Myasoedov

Rhombohedral pentalayer graphene shows chiral superconductivity with domains that switch chirality under ultra-low currents.

arxiv:2605.13303 v1 · 2026-05-13 · cond-mat.mes-hall

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Record completeness

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2 Internet Archive
3 Author claim open · sign in to claim
4 Citations open
5 Replications open
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The bundle contains the canonical record plus signed events. A mirror can host it anywhere and recompute the same current state with the deterministic merge algorithm.

Claims

C1strongest claim

We demonstrate deterministic, ultra low current control of these domains, enabling reversible switching between states of opposite chirality a defining CSC property absent in other superconductors.

C2weakest assumption

The observed magnetic signals arise purely from time-reversal symmetry breaking in the superconducting state rather than from other magnetic or orbital effects, and that domain walls are the primary source of the high resistance in transport.

C3one line summary

Direct magnetometry imaging establishes reconfigurable chiral superconductivity in rhombohedral graphene with low-current domain control.

References

81 extracted · 81 resolved · 0 Pith anchors

[1] C. Nayak, S. H. Simon, A. Stern, M. Freedman, and S. Das Sarma, ''Non-Abelian anyons and topological quantum computation'', Rev. Mod. Phys. 80, 1083–1159 (2008) 2008
[2] H. Zhou, T. Xie, T. Taniguchi, K. Watanabe, and A. F. Young, ''Superconductivity in rhombohedral trilayer graphene'', Nature 598, 434–438 (2021) 2021
[3] H. Zhou, T. Xie, A. Ghazaryan, T. Holder, J. R. Ehrets, E. M. Spanton, T. Taniguchi, K. Watanabe, E. Berg, M. Serbyn, and A. F. Young, ''Half- and quarter-metals in rhombohedral trilayer graphene'', N 2021
[4] Y. Choi, Y. Choi, M. Valentini, C. L. Patterson, L. F. W. Holleis, O. I. Sheekey, H. Stoyanov, X. Cheng, T. Taniguchi, K. Watanabe, and A. F. Young, ''Superconductivity and quantized anomalous Hall eff 2025
[5] M. Kumar, D. Waleffe, A. Okounkova, R. Tejani, V. T. Phong, K. Watanabe, T. Taniguchi, C. Lewandowski, J. Folk, and M. Yankowitz, ''Superconductivity from dual-surface carriers in rhombohedral graphene 2025
Receipt and verification
First computed 2026-05-18T02:44:49.025972Z
Builder pith-number-builder-2026-05-17-v1
Signature Pith Ed25519 (pith-v1-2026-05) · public key
Schema pith-number/v1.0

Canonical hash

5e33f21ed9df5f4f3878a5a2c8b99214013fb041c466c80dbd185e40a62069ec

Aliases

arxiv: 2605.13303 · arxiv_version: 2605.13303v1 · doi: 10.48550/arxiv.2605.13303 · pith_short_12: LYZ7EHWZ35PU · pith_short_16: LYZ7EHWZ35PU6ODY · pith_short_8: LYZ7EHWZ
Agent API
Verify this Pith Number yourself
curl -sH 'Accept: application/ld+json' https://pith.science/pith/LYZ7EHWZ35PU6ODYUWRMROMSCQ \
  | jq -c '.canonical_record' \
  | python3 -c "import sys,json,hashlib; b=json.dumps(json.loads(sys.stdin.read()), sort_keys=True, separators=(',',':'), ensure_ascii=False).encode(); print(hashlib.sha256(b).hexdigest())"
# expect: 5e33f21ed9df5f4f3878a5a2c8b99214013fb041c466c80dbd185e40a62069ec
Canonical record JSON
{
  "metadata": {
    "abstract_canon_sha256": "35f83cbadc41ec9c1c3d9da4c257d4c3593c11171fb310fa7e646fdcd4c693c6",
    "cross_cats_sorted": [],
    "license": "http://creativecommons.org/licenses/by/4.0/",
    "primary_cat": "cond-mat.mes-hall",
    "submitted_at": "2026-05-13T10:14:58Z",
    "title_canon_sha256": "28ab4396fcf973b726b409fd36296094601b6dc0425a13a51b0f5615ca5b078b"
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    "kind": "arxiv",
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}