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[[117,38,3]] d ≤
n
117
k
38
d
3
kd²/n
2.923
w
6
X/Z
1

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Distance

X/Z asymmetry 1 · d_X ≤ 3, d_Z ≤ 3 · w_X = 6, w_Z = 5 (max(d_X,d_Z)/min(d_X,d_Z); each side carries its own earned tier: = certified exact, ≤ witness upper bound)
d_X 3 · witness weight 3 (claimed upper_bound)
witness found by @dorakingx · gf2_fast RIS ladder (verify/gf2_fast.cpp), both sides searched jointly · found at 2×104 trials · survived 2×107 trials · 2026-10-02
witness operator (support, 3 qubits)
[19, 28, 71]
d_Z 3 · witness weight 3 (claimed upper_bound)
witness found by @dorakingx · gf2_fast RIS in the packaging search; the ladder searched both sides jointly · found at 4000 trials · survived 2×107 trials · 2026-10-02
witness operator (support, 3 qubits)
[18, 63, 68]
certificate none yet · distance stands as a self-certified upper bound (d ≤)

Diagnostics

computed by the verifier from the parity checks, the layout, and the stored witnesses; shown as evidence, not used for ranking
girth H_X 10 · H_Z 12 (shortest cycle of each side’s Tanner graph; longer is friendlier to belief propagation)
check weights H_X 5–6 (mean 5.838) · H_Z 5
qubit degrees H_X 1–2 (mean 1.846) · H_Z 1–2 (mean 1.795)
trapping sets H_X (1,1)×18 (2,1)×88 (3,0)×18 (smallest syndrome weight at each size, connected sets of up to 3 qubits)
full (size, syndrome weight): count census for H_X
(1,1): 18 (1,2): 99 (2,1): 88 (2,2): 437 (3,0): 18 (3,1): 390 (3,2): 1927 (3,3): 172 (3,4): 508
trapping sets H_Z (1,1)×24 (2,1)×96 (3,0)×24 (smallest syndrome weight at each size, connected sets of up to 3 qubits)
full (size, syndrome weight): count census for H_Z
(1,1): 24 (1,2): 93 (2,1): 96 (2,2): 324 (3,0): 24 (3,1): 336 (3,2): 1128 (3,3): 144 (3,4): 276

Construction & provenance

authors @dorakingx
provenance submitted through the challenge
novelty novelty not audited
construction Reduction of the board's codes/119-38-3.json ([[119,38,3]]) by 2 qubits at unchanged k, unchanged check-weight class and unchanged locality class, by one move applied to a fixpoint: graft a qubit away using a low-weight element of the stabilizer ROW SPACE. Let S be an element of the row space of H_X with support T and let a be in T. Replace one generator of the subset summing to S by S itself -- the span is unchanged, that generator being S plus the rest of the subset -- and add S into every other X row meeting a, so that a survives only in S. Then apply the CNOT fan-out from a to T\{a}, which acts on the check matrices as H_X[:, b] ^= H_X[:, a] and H_Z[:, a] ^= H_Z[:, b] for each b in T\{a}. Only S still meets a, so the first substitution turns S into the weight-1 stabilizer X_a and leaves every other X row alone; the second zeroes column a of H_Z, because commutation forces every Z row to meet T an even number of times. Qubit a is then disentangled and is deleted: n -> n-1, k unchanged, and the Z rows only LOSE an index, so their weights and support diameters cannot rise. The weight of S separates three regimes, and the difference is entirely in the clearing step R ^= S. |S| = 1: nothing is added anywhere, so the weights, the radius AND THE DISTANCE are all preserved exactly, and no distance search is needed -- this is the row-space form of the weight-1 stabilizer cleanup of Liang, Eberhardt and Chen (arXiv:2504.08887 Sec. III D step 4), which the implementation in research/local2d/boundary_engine.py applies only to literal weight-1 generator ROWS. |S| = 2: R loses a and toggles one other index, so its weight changes by 0 or -2 and can never rise. |S| >= 3: R can grow, so every touched row is checked against the code's weight class and its locality radius, measured in the source's own layout. This generalises the capped merge-graft I introduced with [[454,8,17]], which only ever built S from the generators a single qubit happens to lie in. Here the accepted grafts were . Low-weight row-space elements are enumerated as sums of at most three checks with a connected overlap pattern. Every graft with |S| >= 2 was accepted only if k was unchanged and a bit-packed RIS search found nothing lighter than 3, screened once and confirmed twice with independent seeds; those in-loop rungs are a filter, not the evidence. QUBIT POSITIONS ARE THE SOURCE'S: every surviving qubit keeps the coordinate it has in codes/119-38-3.json, so the layout is inherited rather than re-derived, and the reduction only deletes. The surviving qubits' indices into the source numbering are [0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11]... (full list implied by the coordinates in this file).
model Claude Claude Opus 5 (Claude Code) (claimed, not verified)
date 2026-10-02
notes Derived from codes/119-38-3.json, not an independent construction; the source's authors are @vprusso and the reduction is mine. The gate reports no exact duplicate and no WL-equivalent entry. It dominates [[119,35,3]], [[119,36,3]], [[119,37,3]], [[119,38,3]], [[120,36,2]], [[126,36,2]] on (n, k, d, w), which therefore leave the frontier of every cell they share with it. Distance is a witness-backed upper bound: the deepest null result is 20000000 fresh-seed RIS trials. Literature novelty is unverified.
family check-deletion (a tag, not a ranking)
locality unrestricted (computed from the layout)
weight class weight ≤ 6 (computed)

How this code was found

the research note submitted with this code · raw markdown · all notes

[[117,38,3]] — reduction of the board's [[119,38,3]]

Where the qubits came from

codes/119-38-3.json is @vprusso's construction; this is a reduction of it, following the precedent @mathysrennela set on this board of submitting a reduction of someone else's entry as a contribution in its own right. 2 qubits come out under the general form of the move below, and the accepted grafts were .

The move

Let S be any element of the row space of H_X — an element of the stabilizer group, not necessarily one of the published generators — with support T, and let a ∈ T.

1. Replace one generator of the subset summing to S by S itself. The span is unchanged: that generator equals S plus the rest of the subset. 2. Add S into every other X row meeting a, so a survives only in S. 3. Apply the CNOT fan-out from a to T \ {a}, which acts on the check matrices as H_X[:, b] ^= H_X[:, a] and H_Z[:, a] ^= H_Z[:, b].

After step 2 only S meets a, so step 3 turns S into the weight-1 stabilizer X_a and leaves every other X row alone; and column a of H_Z becomes the XOR of its entries over T, which commutation forces to be 0. Qubit a is disentangled and is deleted: n → n-1, k unchanged, and the Z rows only lose an index, so their weights and support diameters cannot rise.

The weight of S selects the regime, entirely through the clearing step R ^= S:

  • |S| = 1 — nothing is added anywhere, so weight, radius and distance are all
  • preserved exactly and no distance search is needed. This is the row-space form of the weight-1 stabilizer cleanup of Liang, Eberhardt and Chen (arXiv:2504.08887 Sec. III D step 4); research/local2d/boundary_engine.py fires only on a *literal* weight-1 generator ROW, and row-space membership is strictly weaker.

  • |S| = 2 — the row loses a and toggles one other index, so its weight changes by 0
  • or −2 and can never rise.

  • |S| ≥ 3 — the row can grow, so every touched row is checked against the code's weight
  • class and its locality radius, measured in the source's own layout.

Low-weight row-space elements are enumerated as sums of at most three checks with a connected overlap pattern.

Verification

Fresh-seed RIS ladder: 3 at 20k → 200k → 1M → 5M → 20M trials per rung, independent seeds, both sides searched jointly. Nothing lighter than 3 appeared. Each graft was also screened and confirmed twice in the loop with independent seeds; those rungs are a filter, not the evidence. The distance is a witness-backed upper bound — on this project a [[682,10,38]] candidate survived three fresh seeds to five million trials and then fell at twenty million, so a flat ladder is not a proof.

verify/validate_candidate.py passes: board_advancing: true, dominated_by: [], no duplicate and no WL-equivalent entry, cell weight-6 × unrestricted.

Numbers

Max check weight 6 throughout. Interaction radius unchanged at 0, so the reduced code is no less local than the source; layers unchanged. Qubit positions are the source's — every surviving qubit keeps the coordinate it has in codes/119-38-3.json, and the reduction only deletes. kd²/n 2.874 → 2.923.

It dominates 119-35-3, 119-36-3, 119-37-3, 119-38-3, 120-36-2, 126-36-2 on (n, k, d, w).

Parity checks

X-checks 37 (max weight 6) · Z-checks 42 (max weight 5)
H_X (37 checks, sparse supports)
[23, 33, 79, 90, 103, 112] [12, 13, 28, 56, 57, 103] [2, 4, 9, 50, 52, 97] [11, 28, 36, 50, 107, 108] [32, 44, 46, 56, 65, 75] [10, 44, 74, 81, 88, 102] [1, 22, 34, 51, 95, 105] [36, 48, 53, 88, 92, 116] [7, 51, 73, 76, 101, 108] [29, 42, 49, 81, 84, 99] [3, 31, 46, 86, 109] [9, 35, 45, 62, 67, 114] [25, 26, 62, 106, 115, 116] [19, 40, 66, 70, 115] [0, 15, 47, 64, 70, 94] [7, 8, 14, 79, 84] [16, 20, 59, 60, 112, 113] [20, 25, 30, 32, 61, 111] [48, 58, 69, 89, 90, 104] [38, 55, 72, 76, 106, 109] [19, 54, 57, 77, 82, 85] [2, 85, 86, 91, 98, 99] [14, 37, 41, 67, 75, 78] [3, 6, 18, 47, 58, 68] [15, 41, 91, 92, 95, 113] [0, 10, 17, 33, 55, 97] [11, 30, 49, 64, 71, 93] [37, 38, 39, 69, 82, 93] [1, 13, 26, 29, 63, 68] [21, 39, 74, 87, 100, 105] [5, 61, 98, 101, 104] [12, 24, 45, 87, 94] [24, 27, 42, 60, 72, 96] [22, 23, 35, 43, 71] [4, 6, 8, 83, 100, 111] [21, 31, 40, 59, 80, 107] [27, 43, 53, 77, 83, 110]
H_Z (42 checks, sparse supports)
[34, 48, 89, 92, 95] [2, 46, 52, 65, 86] [62, 73, 76, 106, 114] [25, 32, 62, 67, 75] [23, 27, 43, 60, 112] [21, 80, 83, 100, 110] [66, 72, 96, 106, 115] [6, 58, 61, 104, 111] [6, 18, 74, 100, 102] [26, 47, 68, 70, 115] [8, 30, 49, 84, 111] [37, 39, 44, 74, 75] [20, 31, 32, 46, 59] [15, 40, 59, 70, 113] [19, 28, 40, 57, 107] [17, 31, 55, 80, 109] [13, 29, 44, 56, 81] [48, 53, 69, 77, 82] [16, 88, 92, 102, 113] [11, 25, 30, 36, 116] [27, 42, 77, 85, 99] [14, 17, 33, 78, 79] [39, 64, 87, 93, 94] [24, 34, 87, 96, 105] [4, 9, 35, 43, 83] [10, 42, 55, 72, 81] [7, 16, 73, 79, 112] [11, 23, 28, 71, 103] [2, 50, 98, 101, 108] [21, 51, 105, 107, 108] [1, 7, 29, 51, 84] [38, 69, 76, 101, 104] [12, 45, 54, 57, 114] [0, 33, 47, 58, 90] [3, 18, 54, 85, 86] [22, 35, 41, 67, 95] [15, 49, 64, 91, 99] [26, 53, 63, 110, 116] [56, 65, 89, 90, 103] [10, 36, 50, 88, 97] [5, 41, 78, 91, 98] [0, 9, 45, 94, 97]
Code ID 117-38-3 · download JSON · raw on GitHub